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C}, Year = {1997}, Note = {15 pages}, Pages = {044312}, Volume = {60}, Owner = {Leo}, Timestamp = {2010. 08. 22} } @Article{Grigorenko:2000, Title = {Three-cluster states in the spectrum of $^{8}$Be. 1: Structure and $\beta $-decay of $^{8}$B to 16. 6 MeV state}, Author = {L. V. Grigorenko and N. B. Shul'gina and M. V. Zhukov}, Journal = {Nucl. Phys. A}, Year = {2000}, Pages = {105-121}, Volume = {665}, Owner = {Leo}, Timestamp = {2010. 08. 22} } @Article{Grigorenko:2000a, Title = {Three-cluster states in the spectrum of $^{8}$Be. 2: Interaction of 2$^{+}$ doublet with $\alpha$-$\alpha$ continuum}, Author = {L. V. Grigorenko and B. V. Danilin and N. B. Shul'gina}, Journal = {Nucl. Phys. A}, Year = {2000}, Pages = {136-144}, Volume = {671}, Owner = {Leo}, Timestamp = {2010. 08. 22} } @Article{Grigorenko:2000b, author = {L. V. Grigorenko and R. C. Johnson and I. G. Mukha and I. J. Thompson and M. V. Zhukov}, title = {Theory of two-proton radioactivity with application to $^{19}\mathrm{Mg}$ and $^{48}\mathrm{Ni}$}, journal = {Phys. Rev. Lett.}, year = {2000}, volume = {85}, pages = {22-25}, owner = {Leo}, timestamp = {2010. 08. 22}, } @Article{Grigorenko:2001b, Title = {Two-proton or diproton emission: $^{19}$Mg and $^{48}$Ni examples}, Author = {L. V. Grigorenko and R. C. Johnson and I. G. Mukha and I. J. Thompson and M. V. Zhukov}, Journal = {Nucl. Phys. A}, Year = {2001}, Pages = {567c-570c}, Volume = {689}, Owner = {Leo}, Timestamp = {2010. 08. 22} } @Article{Grigorenko:2002, Title = {Two-Proton Widths of $^{12}$O, $^{16}$Ne and Three-Body Mechanism of Thomas-Ehrman Shift}, Author = {Grigorenko, L. V. and Mukha, I. G. and Thompson, I. J. and Zhukov, M. V.}, Journal = {Phys. Rev. Lett.}, Year = {2002}, Month = {Jan}, Pages = {042502}, Volume = {88}, Doi = {10.1103/PhysRevLett.88.042502}, Issue = {4}, Numpages = {4}, Owner = {Leo}, Publisher = {American Physical Society}, Timestamp = {2014.07.05}, Url = {http://link.aps.org/doi/10.1103/PhysRevLett.88.042502} } @Article{Grigorenko:2002a, Title = {Two-proton events in the $^{17}$F(p,2p)$^{16}$O reaction}, Author = {L. V. Grigorenko and I. G. Mukha and I. J. Thompson and M. V. Zhukov}, Journal = {Phys. Rev. C}, Year = {2002}, Pages = {044612}, Volume = {65}, Owner = {Leo}, Timestamp = {2010. 08. 22} } @Article{Grigorenko:2002b, Title = {Three-body decays of light nuclei: $^{6}$Be and $^{8}$Li and $^{9}$Be and $^{12}$O and $^{16}$Ne and and $^{17}$Ne}, Author = {L. V. Grigorenko and R. C. Johnson and I. G. Mukha and I. J. Thompson and M. V. Zhukov}, Journal = {Eur. Phys. J}, Year = {2002}, Pages = {125}, Volume = {15}, Owner = {Leo}, Timestamp = {2010. 08. 22} } @Article{Grigorenko:2003, author = {L.V. Grigorenko and I.G. Mukha and M.V. Zhukov}, title = {Prospective candidates for the two-proton decay studies I: structure and Coulomb energies of $^{17}\mathrm{Ne}$ and $^{19}\mathrm{Mg}$}, journal = {Nuclear Physics A}, year = {2003}, volume = {713}, number = {3-4}, pages = {372 - 389}, note = {erratum Nucl.\ Phys.\ A740 (2004) 401}, issn = {0375-9474}, doi = {http://dx.doi.org/10.1016/S0375-9474(02)01298-8}, url = {http://www.sciencedirect.com/science/article/pii/S0375947402012988}, keywords = {17Ne}, } @Article{Grigorenko:2003a, Title = {Prospective candidates for the two-proton decay studies. II: exploratory studies of $^{30}$Ar and $^{34}$Ca and $^{45}$Fe}, Author = {L. V. Grigorenko and I. G. Mukha and M. V. Zhukov}, Journal = {Nucl. Phys. A}, Year = {2003}, Note = {erratum Nucl. Phys. A740 (2004) 401}, Pages = {425}, Volume = {714}, Owner = {Leo}, Timestamp = {2010. 08. 22} } @Article{Grigorenko:2003b, Title = {Two-proton radioactivity and three-body decay. II. Exploratory studies of lifetimes and correlations}, Author = {L. V. Grigorenko and M. V. Zhukov}, Journal = {Phys. Rev. C}, Year = {2003}, Pages = {054005}, Volume = {68}, Owner = {Leo}, Timestamp = {2010. 08. 22} } @Article{Grigorenko:2004, Title = {Broad states beyond the neutron dripline. Examples of $^{5}$H and $^{4}$n}, Author = {L. V. Grigorenko and N. K. Timofeyuk and M. V. Zhukov}, Journal = {Eur. Phys. J. A}, Year = {2004}, Pages = {187}, Volume = {19}, Owner = {Leo}, Timestamp = {2010. 08. 22} } @Article{Grigorenko:2004a, Title = {Experimental puzzle of $^{5}$H}, Author = {L. V. Grigorenko}, Journal = {Eur. Phys. J. A}, Year = {2004}, Pages = {419}, Volume = {20}, Owner = {Leo}, Timestamp = {2010. 08. 22} } @Article{Grigorenko:2005, Title = {Possibility to study a two-proton halo in $^{17}\mathrm{Ne}$}, Author = {Grigorenko, L. V. and Parfenova, Yu. L. and Zhukov, M. V.}, Journal = {Phys. Rev. C}, Year = {2005}, Month = {May}, Pages = {051604}, Volume = {71}, Doi = {10.1103/PhysRevC.71.051604}, Issue = {5}, Numpages = {5}, Publisher = {American Physical Society}, Url = {http://link.aps.org/doi/10.1103/PhysRevC.71.051604} } @Article{Grigorenko:2005a, Title = {Three-body resonant radioactive capture reactions in astrophysics}, Author = {L. V. Grigorenko and M. V. Zhukov}, Journal = {Phys. Rev. C}, Year = {2005}, Pages = {015803}, Volume = {72}, Owner = {Leo}, Timestamp = {2010. 08. 22} } @Article{Grigorenko:2006, author = {L.V. Grigorenko and K. Langanke and N.B. Shul'gina and M.V. Zhukov}, title = {Soft dipole mode in $^{17}\mathrm{Ne}$ and the astrophysical $2p$ capture on $^{15}\mathrm{O}$}, journal = {Physics Letters B}, year = {2006}, volume = {641}, number = {3}, pages = {254--259}, issn = {0370-2693}, doi = {https://doi.org/10.1016/j.physletb.2006.08.054}, url = {http://www.sciencedirect.com/science/article/pii/S0370269306010604}, abstract = {Using the two-proton-halo candidate 17Ne as an example, we discuss the possibility of a soft-dipole mode in protonrich nuclei. The study is based on a three-body model considering 17Ne as an 15O core and two protons. Our calculation predicts a relatively narrow peak in the E1 strength function which exhausts a considerable part of the E1 cluster sum rule at energies only a few MeV above the 2p threshold. We also calculate the 2p capture cross section on 15O at astrophysical conditions appropriate for explosive hydrogen burning in novae and X-ray bursts. Our calculation includes consistently resonant and non-resonant contributions to the astrophysical capture rate. We find that for a broad range of temperatures (including temperatures in excess of 109 K) the rate is dominated by non-resonant contributions.}, keywords = {Hyperspherical harmonic method, Soft dipole mode, Proton halo}, } @Article{Grigorenko:2007, Title = {Two-proton radioactivity and three-body decay. III. Integral formulas for decay widths in a simplified semianalytical approach}, Author = {Grigorenko, L. V. and Zhukov, M. V.}, Journal = {Phys. Rev. C}, Year = {2007}, Month = {Jul}, Pages = {014008}, Volume = {76}, Doi = {10.1103/PhysRevC.76.014008}, Issue = {1}, Numpages = {17}, Owner = {Leo}, Publisher = {American Physical Society}, Timestamp = {2014.07.05}, Url = {http://link.aps.org/doi/10.1103/PhysRevC.76.014008} } @Article{Grigorenko:2007a, Title = {Two-proton radioactivity and three-body decay. IV. Connection to quasiclassical formulation}, Author = {L. V. Grigorenko and M. V. Zhukov}, Journal = {Phys. Rev. C}, Year = {2007}, Pages = {014009}, Volume = {76}, Owner = {Leo}, Timestamp = {2010. 08. 22} } @Article{Grigorenko:2008, Title = {Problems with interpretation of $^{10}$He ground state}, Author = {L. V. Grigorenko and M. V. Zhukov}, Journal = {Phys. Rev. C}, Year = {2008}, Pages = {034611}, Volume = {77}, Owner = {Leo}, Timestamp = {2010. 08. 22} } @Article{Grigorenko:2009, Title = {Complete correlation studies of two-proton decays: $^{6}$Be and $^{45}$Fe}, Author = {L. V. Grigorenko and T. D. Wiser and K. Miernik and R. J. Charity and M. Pf\"utzner and A. Banu and C. R. Bingham and M. Cwiok and I. G. Darby and W. Dominik and J. M. Elson and T. Ginter and R. Grzywacz and Z. Janas and M. Karny and A. Korgul and S. N. Liddick and K. Mercurio and M. Rajabali and K. Rykaczewski and R. Shane and L. G. Sobotka and A. Stolz and L. Trache and R. E. Tribble and A. H. Wuosmaa and M. V. Zhukov}, Journal = {Phys. Lett. B}, Year = {2009}, Pages = {30-35}, Volume = {677}, Owner = {Leo}, Timestamp = {2010. 08. 22} } @Article{Grigorenko:2009a, Title = {Soft dipole mode in $^{8}$He}, Author = {L. V. Grigorenko and M. S. Golovkov and G. M. Ter-Akopian and A. S. Fomichev and Yu. Ts. Oganessian and V. A. Gorshkov and S. A. Krupko and A. M. Rodin and S. I. Sidorchuk and R. S. Slepnev and S. V. Stepantsov and R. Wolski and D. Y. Pang and V. Chudoba and A. A. Korsheninnikov and E. A. Kuzmin and E. Yu. Nikolskii and B. G. Novatskii and D. N. Stepanov and P. Roussel-Chomaz and W. Mittig and A. Ninane and F. Hanappe and L. Stuttg\'e and A. A. Yukhimchuk and V. V. Perevozchikov and Yu. I. Vinogradov and S. K. Grishechkin and S. V. Zlatoustovskiy}, Journal = {Part. and Nucl. Lett.}, Year = {2009}, Pages = {118-126}, Volume = {6}, Owner = {Leo}, Timestamp = {2010. 08. 22} } @Article{Grigorenko:2009b, Title = {Theoretical Study of Two-Proton Radioactivity. Status and Predictions and and Applications}, Author = {L. V. Grigorenko}, Journal = {Physics of Particles and Nuclei}, Year = {2009}, Pages = {674-714}, Volume = {40}, Owner = {Leo}, Timestamp = {2010. 08. 22} } @Article{Grigorenko:2009c, Title = {Three-body decay of $^6$Be}, Author = {Grigorenko, L. V. and Wiser, T. D. and Mercurio, K. and Charity, R. J. and Shane, R. and Sobotka, L. G. and Elson, J. M. and Wuosmaa, A. H. and Banu, A. and McCleskey, M. and Trache, L. and Tribble, R. E. and Zhukov, M. V.}, Journal = {Phys. Rev. C}, Year = {2009}, Month = {Sep}, Pages = {034602}, Volume = {80}, Doi = {10.1103/PhysRevC.80.034602}, Issue = {3}, Numpages = {18}, Owner = {Leo}, Publisher = {American Physical Society}, Timestamp = {2014.07.05}, Url = {http://link.aps.org/doi/10.1103/PhysRevC.80.034602} } @Article{Grigorenko:2010, Title = {Two-proton radioactivity and three-body decay. V. Improved momentum distributions}, Author = {Grigorenko, L. V. and Egorova, I. A. and Zhukov, M. V. and Charity, R. J. and Miernik, K.}, Journal = {Phys. Rev. C}, Year = {2010}, Month = {Jul}, Pages = {014615}, Volume = {82}, Doi = {10.1103/PhysRevC.82.014615}, Issue = {1}, Numpages = {12}, Owner = {Leo}, Publisher = {American Physical Society}, Timestamp = {2014.07.05}, Url = {http://link.aps.org/doi/10.1103/PhysRevC.82.014615} } @article{Grigorenko:2011, title = {Two-neutron radioactivity and four-nucleon emission from exotic nuclei}, author = {Grigorenko, L. V. and Mukha, I. G. and Scheidenberger, C. and Zhukov, M. V.}, journal = {Phys. Rev. C}, volume = {84}, issue = {2}, pages = {021303}, numpages = {5}, year = {2011}, month = {Aug}, publisher = {American Physical Society}, doi = {10.1103/PhysRevC.84.021303}, url = {https://link.aps.org/doi/10.1103/PhysRevC.84.021303} } @Article{Grigorenko:2012, Title = {Sensitivity of three-body decays to the reactions mechanism and the initial structure by example of ${}^{6}$Be}, Author = {Grigorenko, L. V. and Egorova, I. A. and Charity, R. J. and Zhukov, M. V.}, Journal = {Phys. Rev. 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We develop the continuum shell model based on an effective non-Hermitian Hamiltonian. This rigorous quantum-mechanical method is powerful for description of open quantum systems unifying their structure and reactions. The formalism is explained and examples of its application are given; the results are in a very good agreement with recent experiments on exotic nuclei. We show also how this approach can be successfully applied to a general problem of a signal transmission through an open quantum system.}, day = {01}, doi = {10.1134/S1063778814070163}, issn = {1562-692X}, url = {https://doi.org/10.1134/S1063778814070163} } @Article{Voss:2014, Title = {$^{19}\mathrm{Mg}$ two-proton decay lifetime}, Author = {Voss, P. and Baumann, T. and Bazin, D. and Dewald, A. and Iwasaki, H. and Miller, D. and Ratkiewicz, A. and Spyrou, A. and Starosta, K. and Thoennessen, M. and Vaman, C. and Tostevin, J. A.}, Journal = {Phys. Rev. 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Engel}, title = {The high resolution array (HiRA) for rare isotope beam experiments}, doi = {http://dx.doi.org/10.1016/j.nima.2007.08.248}, issn = {0168-9002}, pages = {302 - 312}, url = {http://www.sciencedirect.com/science/article/pii/S016890020701947X}, volume = {583}, journal = {Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment}, keywords = {Charged particle detection}, owner = {Leo}, timestamp = {2014.07.05}, year = {2007}, } @Article{Wamers:2014, Title = {First Observation of the Unbound Nucleus $^{15}\mathrm{Ne}$}, Author = {Wamers, F. and Marganiec, J. and Aksouh, F. and Aksyutina, Yu. and \'Alvarez-Pol, H. and Aumann, T. and Beceiro-Novo, S. and Boretzky, K. and Borge, M. J. G. and Chartier, M. and Chatillon, A. and Chulkov, L. V. and Cortina-Gil, D. and Emling, H. and Ershova, O. and Fraile, L. M. and Fynbo, H. O. U. and Galaviz, D. and Geissel, H. and Heil, M. and Hoffmann, D. H. H. and Johansson, H. T. and Jonson, B. and Karagiannis, C. and Kiselev, O. A. and Kratz, J. V. and Kulessa, R. and Kurz, N. and Langer, C. and Lantz, M. and Le Bleis, T. and Lemmon, R. and Litvinov, Yu. A. and Mahata, K. and M\"untz, C. and Nilsson, T. and Nociforo, C. and Nyman, G. and Ott, W. and Panin, V. and Paschalis, S. and Perea, A. and Plag, R. and Reifarth, R. and Richter, A. and Rodriguez-Tajes, C. and Rossi, D. and Riisager, K. and Savran, D. and Schrieder, G. and Simon, H. and Stroth, J. and S\"ummerer, K. and Tengblad, O. and Weick, H. and Wimmer, C. and Zhukov, M. V.}, Journal = {Phys. Rev. Lett.}, Year = {2014}, Month = {Apr}, Pages = {132502}, Volume = {112}, Doi = {10.1103/PhysRevLett.112.132502}, Issue = {13}, Numpages = {5}, Owner = {Leo}, Publisher = {American Physical Society}, Timestamp = {2014.07.05}, Url = {http://link.aps.org/doi/10.1103/PhysRevLett.112.132502} } @Article{Wamers:2018, author = {Wamers, F. and Marganiec, J. and Aksouh, F. and Aksyutina, Yu. and Alvarez-Pol, H. and Aumann, T. and Beceiro-Novo, S. and Bertulani, C. A. and Boretzky, K. and Borge, M. J. G. and Chartier, M. and Chatillon, A. and Chulkov, L. V. and Cortina-Gil, D. and Emling, H. and Ershova, O. and Fraile, L. M. and Fynbo, H. O. U. and Galaviz, D. and Geissel, H. and Heil, M. and Hoffmann, D. H. H. and Hoffman, J. and Johansson, H. T. and Jonson, B. and Karagiannis, C. and Kiselev, O. A. and Kratz, J. V. and Kulessa, R. and Kurz, N. and Langer, C. and Lantz, M. and Le Bleis, T. and Lehr, C. and Lemmon, R. and Litvinov, Yu. A. and Mahata, K. and M\"untz, C. and Nilsson, T. and Nociforo, C. and Ott, W. and Panin, V. and Paschalis, S. and Perea, A. and Plag, R. and Reifarth, R. and Richter, A. and Riisager, K. and Rodriguez-Tajes, C. and Rossi, D. and Savran, D. and Schrieder, G. and Simon, H. and Stroth, J. and S\"ummerer, K. and Tengblad, O. and Typel, S. and Weick, H. and Wiescher, M. and Wimmer, C.}, title = {Comparison of electromagnetic and nuclear dissociation of $^{17}\mathrm{Ne}$}, journal = {Phys. Rev. C}, year = {2018}, volume = {97}, pages = {034612}, month = {Mar}, doi = {10.1103/PhysRevC.97.034612}, issue = {3}, numpages = {8}, publisher = {American Physical Society}, url = {https://link.aps.org/doi/10.1103/PhysRevC.97.034612} } @Article{Wang:1994, Title = {$(p,n)$ Quasifree Excitations in $p$-Shell Nuclei at 186 MeV}, Author = {L. Wang and X. Yang and J. Rapaport and C.D. Goodman and C.C. Foster and Y. Wang and J. Piekarewicz and E. Sugarbaker and D. 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H.}, title = {Simplified \ensuremath{\alpha}+4n model for the $^{8}\mathrm{He}$ nucleus}, journal = {Phys. Rev. C}, year = {1994}, volume = {50}, pages = {R1--R4}, month = {Jul}, doi = {10.1103/PhysRevC.50.R1}, issue = {1}, numpages = {0}, publisher = {American Physical Society}, url = {https://link.aps.org/doi/10.1103/PhysRevC.50.R1} } @Article{Zhukov:1995, Title = {$\beta $-decay of $^{11}$Li to the deuteron channel and halo analog states in $^{11}$Be}, Author = {M. V. Zhukov and B. V. Danilin and L. V. Grigorenko and J. S. Vaagen}, Journal = {Phys. Rev. C}, Year = {1995}, Pages = {2461-2467}, Volume = {52}, Owner = {Leo}, Timestamp = {2010. 08. 22} } @Article{Zhukov:1995b, Title = {Particle momentum distributions in an analytical three-body approach}, Author = {M. V. Zhukov and B. Jonson}, Journal = {Nucl. Phys. A}, Year = {1995}, Pages = {1}, Volume = {589}, Owner = {Leo}, Timestamp = {2010. 08. 22} } @Article{Zhukov:1995c, author = {Zhukov, M. V. and Thompson, I. J.}, title = {Existence of proton halos near the drip line}, journal = {Phys. Rev. C}, year = {1995}, volume = {52}, issue = {6}, month = {Dec}, pages = {3505--3508}, doi = {10.1103/PhysRevC.52.3505}, url = {https://link.aps.org/doi/10.1103/PhysRevC.52.3505}, numpages = {0}, publisher = {American Physical Society}, } @Article{, owner = {Leo}, timestamp = {2019-03-24} } @Article{Fomichev:2018, author = {Fomichev, A. S. and Grigorenko, L. V. and Krupko, S. A. and Stepantsov, S. V. and Ter-Akopian, G. M.}, title = {The ACCULINNA-2 project: The physics case and technical challenges}, journal = {The European Physical Journal A}, year = {2018}, volume = {54}, number = {6}, month = {Jun}, pages = {97}, issn = {1434-601X}, doi = {10.1140/epja/i2018-12528-0}, url = {https://doi.org/10.1140/epja/i2018-12528-0}, abstract = {Implementing the Dubna Radioactive Ion Beams project (DRIBs) a new, efficient fragment separator ACCULINNA-2 was installed recently at the primary beam line of the U-400M cyclotron in the Flerov Laboratory of Nuclear Reactions, JINR. Since 2017, radioactive beams have been obtained from this facility. The motivation for the new RIB complex, together with an overview of the RIB research conducted in Dubna and its correlation with the worldwide RIB activities, are given in this paper. The status of the ACCULINNA-2 setup, the nearest prospects for completing its equipment, and the planned first-stage experiments are presented.}, day = {18}, } @Article{Sharov:2019, author = {P.G. Sharov and L.V. Grigorenko and A.N. Ismailova and M.V. Zhukov}, title = {Pauli-principle driven correlations in four-neutron nuclear decays}, journal = {JETPh Lett.}, year = {2019}, volume = {110}, pages = {5-14}, owner = {Leo}, } @Article{Aleksandrov:1982, author = {D.V. Aleksandrov and Yu.A. Glukhov and A.S. Demyanova and V.I. Dukhanov and I.B. Mazurov and B.G. Novatsky and A.A. Ogloblin and S.B. Sakuta and D.N. Stepanov}, title = {Measurement of Spectra of Light Nuclei from Triple Fission of 252Cf and Search for Isotopes 10He and 7H}, pages = {1351}, volume = {36}, journal = {Yad. Fiz.}, year = {1982}, } @Article{Timofeyuk:2002, author = {Timofeyuk, N. K.}, title = {Shell model approach to construction of a hyperspherical basis for A identical particles: Application to hydrogen and helium isotopes}, journal = {Phys. Rev. C}, year = {2002}, volume = {65}, issue = {6}, month = {May}, pages = {064306}, doi = {10.1103/PhysRevC.65.064306}, url = {https://link.aps.org/doi/10.1103/PhysRevC.65.064306}, numpages = {11}, publisher = {American Physical Society}, } @article{Aoyama:2009, title = {Di-neutron correlations in $^{7}\mathrm{H}$}, author = {Aoyama, S. and Itagaki, N.}, journal = {Phys. Rev. C}, volume = {80}, issue = {2}, pages = {021304}, numpages = {5}, year = {2009}, month = {Aug}, publisher = {American Physical Society}, doi = {10.1103/PhysRevC.80.021304}, url = {https://link.aps.org/doi/10.1103/PhysRevC.80.021304} } @Article{Kostyleva:2019, author = {Kostyleva, D. and Mukha, I. and Acosta, L. and Casarejos, E. and Chudoba, V. and Ciemny, A. A. and Dominik, W. and Due\~nas, J. A. and Dunin, V. and Espino, J. M. and Estrad\'e, A. and Farinon, F. and Fomichev, A. and Geissel, H. and Gorshkov, A. and Grigorenko, L. V. and Janas, Z. and Kami\ifmmode \acute{n}\else \'{n}\fi{}ski, G. and Kiselev, O. and Kn\"obel, R. and Krupko, S. and Kuich, M. and Litvinov, Yu. A. and Marquinez-Dur\'an, G. and Martel, I. and Mazzocchi, C. and Nociforo, C. and Ord\'uz, A. K. and Pf\"utzner, M. and Pietri, S. and Pomorski, M. and Prochazka, A. and Rymzhanova, S. and S\'anchez-Ben\'{\i}tez, A. M. and Scheidenberger, C. and Simon, H. and Sitar, B. and Slepnev, R. and Stanoiu, M. and Strmen, P. and Szarka, I. and Takechi, M. and Tanaka, Y. K. and Weick, H. and Winkler, M. and Winfield, J. S. and Xu, X. and Zhukov, M. V.}, title = {Towards the Limits of Existence of Nuclear Structure: Observation and First Spectroscopy of the Isotope $^{31}\mathrm{K}$ by Measuring Its Three-Proton Decay}, journal = {Phys. Rev. Lett.}, year = {2019}, volume = {123}, issue = {9}, month = {Aug}, pages = {092502}, doi = {10.1103/PhysRevLett.123.092502}, url = {https://link.aps.org/doi/10.1103/PhysRevLett.123.092502}, numpages = {5}, publisher = {American Physical Society}, } @Article{Dutta:2003, author = {S K Dutta and T K Das and M A Khan and B Chakrabarti}, title = {Computation of $2^+$ resonance in $^6\mathrm{He}$: bound state in the continuum}, journal = {Journal of Physics G: Nuclear and Particle Physics}, year = {2003}, volume = {29}, number = {10}, month = {sep}, pages = {2411--2421}, doi = {10.1088/0954-3899/29/10/307}, url = {https://doi.org/10.1088\%2F0954-3899\%2F29\%2F10\%2F307}, publisher = {{IOP} Publishing}, } @Article{Geithner:2008, author = {Geithner, W. and Neff, T. and Audi, G. and Blaum, K. and Delahaye, P. and Feldmeier, H. and George, S. and Gu\'enaut, C. and Herfurth, F. and Herlert, A. and Kappertz, S. and Keim, M. and Kellerbauer, A. and Kluge, H.-J. and Kowalska, M. and Lievens, P. and Lunney, D. and Marinova, K. and Neugart, R. and Schweikhard, L. and Wilbert, S. and Yazidjian, C.}, title = {Masses and Charge Radii of $^{17-22}\mathrm{Ne}$ and the Two-Proton-Halo Candidate $^{17}\mathrm{Ne}$}, journal = {Phys. Rev. Lett.}, year = {2008}, volume = {101}, issue = {25}, month = {Dec}, pages = {252502}, doi = {10.1103/PhysRevLett.101.252502}, url = {https://link.aps.org/doi/10.1103/PhysRevLett.101.252502}, numpages = {4}, publisher = {American Physical Society}, } @Article{Aumann:1999, author = {Aumann, T. and Aleksandrov, D. and Axelsson, L. and Baumann, T. and Borge, M. J. G. and Chulkov, L. V. and Cub, J. and Dostal, W. and Eberlein, B. and Elze, Th. W. and Emling, H. and Geissel, H. and Goldberg, V. Z. and Golovkov, M. and Gr\"unschlo\ss{}, A. and Hellstr\"om, M. and Hencken, K. and Holeczek, J. and Holzmann, R. and Jonson, B. and Korshenninikov, A. A. and Kratz, J. V. and Kraus, G. and Kulessa, R. and Leifels, Y. and Leistenschneider, A. and Leth, T. and Mukha, I. and M\"unzenberg, G. and Nickel, F. and Nilsson, T. and Nyman, G. and Petersen, B. and Pf\"utzner, M. and Richter, A. and Riisager, K. and Scheidenberger, C. and Schrieder, G. and Schwab, W. and Simon, H. and Smedberg, M. H. and Steiner, M. and Stroth, J. and Surowiec, A. and Suzuki, T. and Tengblad, O. and Zhukov, M. V.}, title = {Continuum excitations in ${}^{6}\mathrm{He}$}, journal = {Phys. Rev. C}, year = {1999}, volume = {59}, issue = {3}, month = {Mar}, pages = {1252--1262}, doi = {10.1103/PhysRevC.59.1252}, url = {https://link.aps.org/doi/10.1103/PhysRevC.59.1252}, numpages = {0}, publisher = {American Physical Society}, } @Article{Aumann2005, author = {Aumann, T.}, title = {Reactions with fast radioactive beams of neutron-rich nuclei}, journal = {The European Physical Journal A - Hadrons and Nuclei}, year = {2005}, volume = {26}, number = {3}, month = {Dec}, pages = {441--478}, issn = {1434-601X}, doi = {10.1140/epja/i2005-10173-4}, url = {https://doi.org/10.1140/epja/i2005-10173-4}, abstract = {The neutron dripline has presently been reached only for the lightest nuclei up to the element oxygen. In this region of light neutron-rich nuclei, scattering experiments are feasible even for dripline nuclei by utilizing high-energy secondary beams produced by fragmentation. In the present article, reactions of high-energy radioactive beams will be exemplified using recent experimental results mainly derived from measurements of breakup reactions performed at the LAND and FRS facilities at GSI and at the S800 spectrometer at the NSCL. Nuclear and electromagnetically induced reactions allow probing different aspects of nuclear structure at the limits of stability related to the neutron-proton asymmetry and the weak binding close to the dripline. Properties of the valence-neutron wave functions are studied in the one-neutron knockout reaction, revealing the changes of shell structure when going from the beta-stability line to more asymmetric loosely bound neutron-rich systems. The vanishing of the N = 8 shell gap for neutron-rich systems like 11Li and 12Be, or the new closed N = 14, 16 shells for the oxygen isotopes are examples. The continuum of weakly bound nuclei and halo states can be studied by inelastic scattering. The dipole response, for instance, is found to change dramatically when going away from the valley of stability. A redistribution of the dipole strength towards lower excitation energies is observed for neutron-rich nuclei, which partly might be due to a new collective excitation mode related to the neutron-proton asymmetry. Halo nuclei, in particular, show strong dipole transitions to the continuum at the threshold, being directly related to the ground-state properties of the projectile. Finally, an outlook on future experimental prospects is given.}, day = {01}, } @Article{Bezbakh:2018, author = {A. A. Bezbakh and S. G. Belogurov and R. Wolski and E. M. Gazeeva and M. S. Golovkov and A. V. Gorshkov and G. Kaminski and M. Yu. Kozlov and S. A. Krupko and I. A. Muzalevky and E. Yu. Nikolskii and E. V. Ovcharenko and R. S. Slepnev and G. M. Ter-Akopian and A. S. Fomichev and V. Chudoba, P. G. Sharov and V. N. Schetinin}, title = {A Neutron Spectrometer for Experiments with Radioactive Beams on the ACCULINNA-2 Fragment Separator}, doi = {10.1134/S0020441218050032}, pages = {631-638}, url = {https://doi.org/10.1134/S0020441218050032}, volume = {61}, abstract = {A neutron spectrometer based on stilbene crystals has been developed by the Flerov Laboratory of Nuclear Reactions at the Joint Institute for Nuclear Research (Dubna, Russia). The timing resolution is determined as a function of the signal amplitude (sigma_T = 0.18 ns at an amplitude of 1 MeV in the electron equivalent). The measured energy resolution of the detecting modules for ? rays is sigma E/E = 4.5% at E = 1 MeV. The quality of the n-gamma discrimination is investigated. It is shown that reliable discrimination is possible, beginning with a deposited energy of 100 keV in the electron equivalent, which corresponds to the kinetic energy of recoil protons of ~700 keV. The neutron spectrometer helps to significantly expand the experimental capabilities and to carry out correlation experiments with radioactive beams on the ACCULINNA-2 fragment separator at a new level of quality.}, journal = {Instruments and Experimental Techniques}, year = {2018}, } @Article{Kanungo:2015, author = {Kanungo, R. and Sanetullaev, A. and Tanaka, J. and Ishimoto, S. and Hagen, G. and Myo, T. and Suzuki, T. and Andreoiu, C. and Bender, P. and Chen, A. A. and Davids, B. and Fallis, J. and Fortin, J. P. and Galinski, N. and Gallant, A. T. and Garrett, P. E. and Hackman, G. and Hadinia, B. and Jansen, G. and Keefe, M. and Kr\"ucken, R. and Lighthall, J. and McNeice, E. and Miller, D. and Otsuka, T. and Purcell, J. and Randhawa, J. S. and Roger, T. and Rojas, A. and Savajols, H. and Shotter, A. and Tanihata, I. and Thompson, I. J. and Unsworth, C. and Voss, P. and Wang, Z.}, title = {Evidence of Soft Dipole Resonance in $^{11}\mathrm{Li}$ with Isoscalar Character}, journal = {Phys. Rev. Lett.}, year = {2015}, volume = {114}, issue = {19}, month = {May}, pages = {192502}, doi = {10.1103/PhysRevLett.114.192502}, url = {https://link.aps.org/doi/10.1103/PhysRevLett.114.192502}, numpages = {5}, publisher = {American Physical Society}, } @Article{Tanaka:2017, author = {J. Tanaka and R. Kanungo and M. Alcorta and N. Aoi and H. Bidaman and C. Burbadge and G. Christian and S. Cruz and B. Davids and A. Diaz Varela and J. Even and G. Hackman and M.N. Harakeh and J. Henderson and S. Ishimoto and S. Kaur and M. Keefe and R. Krucken and K.G. Leach and J. Lighthall and E. Padilla Rodal and J.S. Randhawa and P. Ruotsalainen and A. Sanetullaev and J.K. Smith and O. Workman and I. Tanihata}, title = {Halo-induced large enhancement of soft dipole excitation of 11Li observed via proton inelastic scattering}, journal = {Physics Letters B}, year = {2017}, volume = {774}, pages = {268-272}, issn = {0370-2693}, doi = {https://doi.org/10.1016/j.physletb.2017.09.079}, url = {http://www.sciencedirect.com/science/article/pii/S0370269317307918}, keywords = {Li, Neutron halo, Soft-dipole resonance, Proton inelastic scattering, Isoscalar E1}, } @Article{Bezbakh:2020, author = {Bezbakh, A. A. and Chudoba, V. and Krupko, S. A. and Belogurov, S. G. and Biare, D. and Fomichev, A. S. and Gazeeva, E. M. and Gorshkov, A. V. and Grigorenko, L. V. and Kaminski, G. and Kiselev, O. A. and Kostyleva, D. A. and Kozlov, M. Yu. and Mauyey, B. and Mukha, I. and Muzalevskii, I. A. and Nikolskii, E. Yu. and Parfenova, Yu. L. and Piatek, W. and Quynh, A. M. and Schetinin, V. N. and Serikov, A. and Sidorchuk, S. I. and Sharov, P. G. and Slepnev, R. S. and Stepantsov, S. V. and Swiercz, A. and Szymkiewicz, P. and Ter-Akopian, G. M. and Wolski, R. and Zalewski, B. and Zhukov, M. V.}, title = {Evidence for the First Excited State of $^{7}\mathrm{H}$}, journal = {Phys. Rev. Lett.}, year = {2020}, volume = {124}, issue = {2}, month = {Jan}, pages = {022502}, doi = {10.1103/PhysRevLett.124.022502}, url = {https://link.aps.org/doi/10.1103/PhysRevLett.124.022502}, numpages = {5}, publisher = {American Physical Society}, } @Article{deDiego:2011, author = {R. de Diego and E. Garrido and D. V. Fedorov and A. S. Jensen}, title = {Relative production rates of $^6$He, $^9$Be, $^{12}$C in astrophysical environments}, journal = {Few-Body Systems}, year = {2011}, volume = {50}, pages = {331}, doi = {10.1007/s00601-010-0162-0}, url = {https://doi.org/10.1007/s00601-010-0162-0}, } @Article{deDiego:2014, author = {R. de Diego and E. Garrido and D. V. Fedorov and A. S. Jensen}, title = {Production of 6He and 9Be by radiative capture and four-body recombination}, journal = {The European Physical Journal A}, year = {2014}, volume = {50}, pages = {93}, doi = {10.1140/epja/i2014-14093-x}, url = {https://doi.org/10.1140/epja/i2014-14093-x}, } @Article{Goerres:1995a, author = {G\"orres, J. and Herndl, H. and Thompson, I. J. and Wiescher, M.}, title = {Two-neutron capture reactions in supernovae neutrino bubbles}, journal = {Phys. Rev. C}, year = {1995}, volume = {52}, issue = {4}, month = {Oct}, pages = {2231--2235}, doi = {10.1103/PhysRevC.52.2231}, url = {https://link.aps.org/doi/10.1103/PhysRevC.52.2231}, numpages = {0}, publisher = {American Physical Society}, } @Article{Efros:1996, author = {Efros, V. D. and Balogh, W. and Herndl, H. and Hofinger, R. and Oberhummer, H.}, title = {Reaction rate for two-neutron capture by 4He}, journal = {Zeitschrift fur Physik A Hadrons and Nuclei}, year = {1996}, volume = {355}, pages = {101--105}, doi = {10.1007/s002180050084}, url = {https://doi.org/10.1007/s002180050084}, } @Article{Bartlett:2006, author = {Bartlett, Amy and G\"orres, Joachim and Mathews, Grant J. and Otsuki, Kaori and Wiescher, Michael and Frekers, Dieter and Mengoni, Alberto and Tostevin, Jeffrey}, title = {Two-neutron capture reactions and the $r$ process}, journal = {Phys. Rev. C}, year = {2006}, volume = {74}, issue = {1}, month = {Jul}, pages = {015802}, doi = {10.1103/PhysRevC.74.015802}, url = {https://link.aps.org/doi/10.1103/PhysRevC.74.015802}, numpages = {8}, publisher = {American Physical Society}, } @Article{Grigorenko:2020, author = {Grigorenko, L. V. and Shulgina, N. B. and Zhukov, M. V.}, title = {High-precision studies of the soft dipole mode in two-neutron halo nuclei: The $^{6}\mathrm{He}$ case}, journal = {Phys. Rev. C}, year = {2020}, volume = {102}, issue = {1}, month = {Jul}, pages = {014611}, doi = {10.1103/PhysRevC.102.014611}, url = {https://link.aps.org/doi/10.1103/PhysRevC.102.014611}, numpages = {15}, publisher = {American Physical Society}, } @Article{Grigorenko:2020b, author = {L.V. Grigorenko and N.B. Shulgina and M.V. Zhukov}, title = {Three-body vs. dineutron approach to two-neutron radiative capture in $^{6}\mathrm{He}$}, journal = {Physics Letters B}, year = {2020}, volume = {807}, pages = {135557}, issn = {0370-2693}, doi = {https://doi.org/10.1016/j.physletb.2020.135557}, url = {http://www.sciencedirect.com/science/article/pii/S0370269320303610}, abstract = {The low-energy behavior of the strength function for the 1? soft dipole excitation in 6He is studied theoretically. Use of very large basis sizes and well-grounded extrapolation procedures allows to move to energies as small as 1 keV, at which the low-energy asymptotic behavior of the E1 strength function seems to be achieved. It is found that the low-energy behavior of the strength function is well described in the effective three-body "dynamical dineutron model". The astrophysical rate for the alpha+n+n?6He+gamma is calculated. Comparison with the previous calculations is performed.}, keywords = {Two-neutron nonresonant radiative capture reaction, Soft dipole mode, Neutron halo, Three-body hyperspherical harmonics method, Dynamical dineutron model}, } @Article{Savran:2013, author = {D. Savran and T. Aumann and A. Zilges}, title = {Experimental studies of the Pygmy Dipole Resonance}, journal = {Progress in Particle and Nuclear Physics}, year = {2013}, volume = {70}, pages = {210 - 245}, issn = {0146-6410}, doi = {https://doi.org/10.1016/j.ppnp.2013.02.003}, url = {http://www.sciencedirect.com/science/article/pii/S0146641013000057}, abstract = {The electric dipole response of atomic nuclei has attracted a lot of attention from experimentalists and theorists in the last decade. This review gives an overview about the present status of experimental approaches to study low-lying electric dipole strength (often denoted as Pygmy Dipole Resonance) in stable and radioactive atomic nuclei and discusses the implications of these findings. Data published until July 2012 have been taken into account.}, keywords = {Collective modes, E1 strength, Pygmy Dipole Resonance, Neutron skin}, } @Article{Paar:2007, author = {Nils Paar and Dario Vretenar and Elias Khan and Gianluca Col{\`{o}}}, title = {Exotic modes of excitation in atomic nuclei far from stability}, journal = {Reports on Progress in Physics}, year = {2007}, volume = {70}, number = {5}, month = {apr}, pages = {691--793}, doi = {10.1088/0034-4885/70/5/r02}, url = {https://doi.org/10.1088%2F0034-4885%2F70%2F5%2Fr02}, abstract = {We review recent studies of the evolution of collective excitations in atomic nuclei far from the valley of beta-stability. Collective degrees of freedom govern essential aspects of nuclear structure, and for several decades the study of collective modes such as rotations and vibrations has played a vital role in our understanding of complex properties of nuclei. The multipole response of unstable nuclei and the possible occurrence of new exotic modes of excitation in weakly bound nuclear systems, present a rapidly growing field of research, but only few experimental studies of these phenomena have been reported so far. Valuable data on the evolution of the low-energy dipole response in unstable neutron-rich nuclei have been gathered in recent experiments, but the available information is not sufficient to determine the nature of observed excitations. Even in stable nuclei various modes of giant collective oscillations had been predicted by theory years before they were observed, and for that reason it is very important to perform detailed theoretical studies of the evolution of collective modes of excitation in nuclei far from stability. We therefore discuss the modern theoretical tools that have been developed in recent years for the description of collective excitations in weakly bound nuclei. The review focuses on the applications of these models to studies of the evolution of low-energy dipole modes from stable nuclei to systems near the particle emission threshold, to analyses of various isoscalar modes, those for which data are already available, as well as those that could be observed in future experiments, to a description of charge-exchange modes and their evolution in neutron-rich nuclei, and to studies of the role of exotic low-energy modes in astrophysical processes.}, publisher = {{IOP} Publishing}, } @Article{, volume = {460}, } @Article{Singh:2016, author = {J. Singh and L. Fortunato and A. Vitturi and R. Chatterjee}, title = {Electric multipole response of the halo nucleus 6He}, journal = {Eur. Phys. J. A}, year = {2016}, volume = {52}, pages = {209}, url = {https://doi.org/10.1140/epja/i2016-16209-8}, } @Article{Myo:2014, author = {Takayuki Myo and Yuma Kikuchi and Hiroshi Masui and Kiyoshi Kato}, title = {Recent development of complex scaling method for many-body resonances and continua in light nuclei}, journal = {Progress in Particle and Nuclear Physics}, year = {2014}, volume = {79}, pages = {1 - 56}, issn = {0146-6410}, doi = {https://doi.org/10.1016/j.ppnp.2014.08.001}, url = {http://www.sciencedirect.com/science/article/pii/S0146641014000556}, abstract = {The complex scaling method (CSM) is a useful similarity transformation of the Schroedinger equation, in which bound-state spectra are not changed but continuum spectra are separated into resonant and non-resonant continuum ones. Because the asymptotic wave functions of the separated resonant states are regularized by the CSM, many-body resonances can be obtained by solving an eigenvalue problem with the L2 basis functions. Applying this method to a system consisting of a core and valence nucleons, we investigate many-body resonant states in weakly bound nuclei very far from the stability lines. Non-resonant continuum states are also obtained with the discretized eigenvalues on the rotated branch cuts. Using these complex eigenvalues and eigenstates in CSM, we construct the extended completeness relations and Green’s functions to calculate strength functions and breakup cross sections. Various kinds of theoretical calculations and comparisons with experimental data are presented.}, keywords = {Complex scaling method, Resonances, Level density, Extended completeness relation, Halo nuclei}, } @Article{Lay:2010, author = {Lay, J. A. and Moro, A. M. and Arias, J. M. and G\'omez-Camacho, J.}, title = {Exploring continuum structures with a pseudo-state basis}, journal = {Phys. Rev. C}, year = {2010}, volume = {82}, issue = {2}, month = {Aug}, pages = {024605}, doi = {10.1103/PhysRevC.82.024605}, url = {https://link.aps.org/doi/10.1103/PhysRevC.82.024605}, numpages = {11}, publisher = {American Physical Society}, } @Article{Descouvemont:2012, author = {Descouvemont, Pierre and Pinilla, Edna and Baye, Daniel}, title = {{Comparative Study of Three-Body Models for Continuum States}}, journal = {Progress of Theoretical Physics Supplement}, year = {2012}, volume = {196}, month = {10}, pages = {1-15}, issn = {0375-9687}, doi = {10.1143/PTPS.196.1}, eprint = {https://academic.oup.com/ptps/article-pdf/doi/10.1143/PTPS.196.1/5339138/196-1.pdf}, url = {https://doi.org/10.1143/PTPS.196.1}, abstract = {{We discuss properties of three-body continuum states in the hyperspherical formalism. The associated coupled-channel system is solved on a Lagrange basis, and is complemented by the R-matrix theory for the treatment of scattering states. Three-body a + n + n phase shifts are determined under various conditions. Two approximations of the continuum are considered: the complex scaling and the pseudostate methods. Both are briefly outlined, and compared with the R-matrix approach for the dipole-strength distribution of 6He. A fair agreement is obtained between the three methods. We also discuss the influence of the a + n and n + n interactions, as well as the effect of the Pauli principle. Some differences are obtained, but all calculations predict a broad 1- resonance near 1 MeV.}}, } @Article{Mikami:2014, author = {Mikami, D. and Horiuchi, W. and Suzuki, Y.}, title = {Electric dipole response of $^{6}\mathrm{He}$: Halo-neutron and core excitations}, journal = {Phys. Rev. C}, year = {2014}, volume = {89}, issue = {6}, month = {Jun}, pages = {064303}, doi = {10.1103/PhysRevC.89.064303}, url = {https://link.aps.org/doi/10.1103/PhysRevC.89.064303}, numpages = {11}, publisher = {American Physical Society}, } @Article{Bacca:2002, author = {Bacca, Sonia and Marchisio, Mario Andrea and Barnea, Nir and Leidemann, Winfried and Orlandini, Giuseppina}, title = {Microscopic Calculation of Six-Body Inelastic Reactions with Complete Final State Interaction: Photoabsorption of $\text{ }^{6}\mathrm{H}\mathrm{e}$ and $\text{ }^{6}\mathrm{L}\mathrm{i}$}, journal = {Phys. Rev. Lett.}, year = {2002}, volume = {89}, issue = {5}, month = {Jul}, pages = {052502}, doi = {10.1103/PhysRevLett.89.052502}, url = {https://link.aps.org/doi/10.1103/PhysRevLett.89.052502}, numpages = {4}, publisher = {American Physical Society}, } @Article{Mueller:2007, author = {Mueller, P. and Sulai, I. A. and Villari, A. C. C. and Alc\'antara-N\'u\~nez, J. A. and Alves-Cond\'e, R. and Bailey, K. and Drake, G. W. F. and Dubois, M. and El\'eon, C. and Gaubert, G. and Holt, R. J. and Janssens, R. V. F. and Lecesne, N. and Lu, Z.-T. and O'Connor, T. P. and Saint-Laurent, M.-G. and Thomas, J.-C. and Wang, L.-B.}, title = {Nuclear Charge Radius of $^{8}\mathrm{He}$}, journal = {Phys. Rev. Lett.}, year = {2007}, volume = {99}, issue = {25}, month = {Dec}, pages = {252501}, doi = {10.1103/PhysRevLett.99.252501}, url = {https://link.aps.org/doi/10.1103/PhysRevLett.99.252501}, numpages = {4}, publisher = {American Physical Society}, } @Article{Egelhof:2001, author = {P. Egelhof}, title = {Nuclear matter distributions of neutron-rich halo nuclei from intermediate energy elastic proton scattering in inverse kinematics}, journal = {Progress in Particle and Nuclear Physics}, year = {2001}, volume = {46}, number = {1}, pages = {307 - 316}, issn = {0146-6410}, doi = {https://doi.org/10.1016/S0146-6410(01)00136-3}, url = {http://www.sciencedirect.com/science/article/pii/S0146641001001363}, abstract = {Neutron-rich light nuclei near or at the neutron drip line have attracted much attention in recent years since there is clear evidence that they reveal a qualitatively new type of nuclear structure, namely an extended distribution of valence neutrons surrounding a compact nuclear core. A brief overview is given on this phenomenon, and on the various methods which gave first evidence for, and qualitative confirmation of our present picture on halo nuclei. For gaining more quantitative information on the radial shape of halo nuclei, elastic proton scattering on neutron-rich light nuclei at intermediate energies was investigated for the first time. This method is demonstrated to be an effective means for obtaining accurate and detailed information on nuclear matter distributions and nuclear matter radii of halo nuclei. Data in the energy range around 700 MeV/u have been taken at GSI Darmstadt for the neutron-rich helium isotopes 6He and 8He and more recently for the lithium isotopes 6Li, 9Li and 11Li. The experimental method is based on the high-pressure hydrogen-filled ionization chamber IKAR which serves simultaneously as gas target and recoil proton detector. Projectile scattering angles were measured precisely with multiwire tracking detectors. For obtaining the nuclear matter distributions, the measured differential cross sections have been compared with cross sections calculated with the aid of the Glauber multiple-scattering theory, using various parametrizations for the nucleon density distributions as input. The results on the nuclear matter radii, the matter distributions, and the significance of the data for a halo structure are discussed. For 6He, 8He and for 11Li, in particular, the deduced nuclear matter distributions exhibit a fairly pronounced halo structure. The present data allow also a sensitive test for theoretical model calculations on the structure of neutron-rich helium and lithium isotopes. A few examples are presented.}, } @Article{Schneider:1972, author = {T.R. Schneider}, title = {Convergence of generalized spherical harmonic expansions in the three nucleon bound state}, journal = {Physics Letters B}, year = {1972}, volume = {40}, number = {4}, pages = {439 - 442}, issn = {0370-2693}, doi = {https://doi.org/10.1016/0370-2693(72)90545-X}, url = {http://www.sciencedirect.com/science/article/pii/037026937290545X}, abstract = {Theorems are presented on the rate of convergence of approximate three nucleon binding energies obtained by expanding the bound state wavefunction in a truncated generalized spherical harmonic basis. The rate of convergence is related to the properties of the two-body potential.}, } @Article{Timofeyuk:2003, author = {Timofeyuk, N. K. and Blokhintsev, L. D. and Tostevin, J. A.}, title = {Pre-asymptotic behavior of single-particle overlap integrals of non-Borromean two-neutron halos}, journal = {Phys. Rev. C}, year = {2003}, volume = {68}, issue = {2}, month = {Aug}, pages = {021601}, doi = {10.1103/PhysRevC.68.021601}, url = {https://link.aps.org/doi/10.1103/PhysRevC.68.021601}, numpages = {5}, publisher = {American Physical Society}, } @Article{Timofeyuk:2003a, author = {Timofeyuk, N. K. and Johnson, R. C. and Mukhamedzhanov, A. M.}, title = {Relation between Proton and Neutron Asymptotic Normalization Coefficients for Light Mirror Nuclei and its Relevance to Nuclear Astrophysics}, journal = {Phys. Rev. Lett.}, year = {2003}, volume = {91}, issue = {23}, month = {Dec}, pages = {232501}, doi = {10.1103/PhysRevLett.91.232501}, url = {https://link.aps.org/doi/10.1103/PhysRevLett.91.232501}, numpages = {4}, publisher = {American Physical Society}, } @Article{Xu:1994, author = {Xu, H. M. and Gagliardi, C. A. and Tribble, R. E. and Mukhamedzhanov, A. M. and Timofeyuk, N. K.}, title = {Overall Normalization of the Astrophysical $S$ Factor and the Nuclear Vertex Constant for $^{7}\mathrm{Be}{(p,\ensuremath{\gamma})}^{8}\mathrm{B}$ Reactions}, journal = {Phys. Rev. Lett.}, year = {1994}, volume = {73}, issue = {15}, month = {Oct}, pages = {2027--2030}, doi = {10.1103/PhysRevLett.73.2027}, url = {https://link.aps.org/doi/10.1103/PhysRevLett.73.2027}, numpages = {0}, publisher = {American Physical Society}, } @Article{Blokhintsev:1977, author = {Blokhintsev, L. D. and Borbely, I. and Dolinskii, E. I.}, journal = {Sov. J. Part. Nucl.}, year = {1977}, volume = {8}, pages = {485}, } @Article{Mukhamedzhanov:2019, author = {Mukhamedzhanov, A. M. and Pang, D. Y. and Kadyrov, A. S.}, title = {Astrophysical factors of $^{12}\mathrm{C}+^{12}\mathrm{C}$ fusion extracted using the Trojan horse method}, journal = {Phys. Rev. C}, year = {2019}, volume = {99}, issue = {6}, month = {Jun}, pages = {064618}, doi = {10.1103/PhysRevC.99.064618}, url = {https://link.aps.org/doi/10.1103/PhysRevC.99.064618}, numpages = {12}, publisher = {American Physical Society}, } @Article{Mukhamedzhanov:2019a, author = {Mukhamedzhanov, A. M.}, title = {Connection between asymptotic normalization coefficients and resonance widths of mirror states}, journal = {Phys. Rev. C}, year = {2019}, volume = {99}, issue = {2}, month = {Feb}, pages = {024311}, doi = {10.1103/PhysRevC.99.024311}, url = {https://link.aps.org/doi/10.1103/PhysRevC.99.024311}, numpages = {15}, publisher = {American Physical Society}, } @Article{Mukhamedzhanov:2017, author = {Mukhamedzhanov, A. M. and Rogachev, G. V.}, title = {Radiative capture reactions via indirect methods}, journal = {Phys. Rev. C}, year = {2017}, volume = {96}, issue = {4}, month = {Oct}, pages = {045811}, doi = {10.1103/PhysRevC.96.045811}, url = {https://link.aps.org/doi/10.1103/PhysRevC.96.045811}, numpages = {16}, publisher = {American Physical Society}, } @Article{Okolowicz:2012, author = {Oko\l{}owicz, J. and Michel, N. and Nazarewicz, W. and P\l{}oszajczak, M.}, title = {Asymptotic normalization coefficients and continuum coupling in mirror nuclei}, journal = {Phys. Rev. C}, year = {2012}, volume = {85}, issue = {6}, month = {Jun}, pages = {064320}, doi = {10.1103/PhysRevC.85.064320}, url = {https://link.aps.org/doi/10.1103/PhysRevC.85.064320}, numpages = {16}, publisher = {American Physical Society}, } @Article{Mukhamedzhanov:2006, author = {{ A.M. Mukhamedzhanov} and { L.D. Blokhintsev} and { B.A. Brown} and {V. Burjan} and {S. Cherubini} and { C.A. Gagliardi} and { B.F. Irgaziev} and {V. Kroha} and {F.M. Nunes} and {F. Pirlepesov} and {R.G. Pizzone} and {S. Romano} and {C. Spitaleri} and {X.D. Tang} and {L. Trache} and {R.E. Tribble} and {A. Tumino}}, title = {Indirect techniques in nuclear astrophysics - Asymptotic Normalization Coefficient and Trojan Horse}, doi = {10.1140/epja/i2006-08-032-7}, pages = {205-215}, url = {https://doi.org/10.1140/epja/i2006-08-032-7}, volume = {27}, journal = {Eur. Phys. J. A}, year = {2006}, } @Article{Pang:2007, author = {Pang, D. Y. and Nunes, F. M. and Mukhamedzhanov, A. M.}, title = {Are spectroscopic factors from transfer reactions consistent with asymptotic normalization coefficients?}, journal = {Phys. Rev. C}, year = {2007}, volume = {75}, issue = {2}, month = {Feb}, pages = {024601}, doi = {10.1103/PhysRevC.75.024601}, url = {https://link.aps.org/doi/10.1103/PhysRevC.75.024601}, numpages = {10}, publisher = {American Physical Society}, } @Article{Kaminski:2020, author = {G. Kaminski and B. Zalewski and S.G. Belogurov and A.A. Bezbakh and D. Biare and V. Chudoba and A.S. Fomichev and E.M. Gazeeva and M.S. Golovkov and A.V. Gorshkov and L.V. Grigorenko and D.A. Kostyleva and S.A. Krupko and I.A. Muzalevsky and E.Yu. Nikolskii and Yu.L. Parfenova and P. Plucinski and A.M. Quynh and A. Serikov and S.I. Sidorchuk and R.S. Slepnev and P.G. Sharov and P. Szymkiewicz and A. Swiercz and S.V. Stepantsov and G.M. Ter-Akopian and R. Wolski}, title = {Status of the new fragment separator ACCULINNA-2 and first experiments}, journal = {Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms}, year = {2020}, volume = {463}, pages = {504 - 507}, issn = {0168-583X}, doi = {https://doi.org/10.1016/j.nimb.2019.03.042}, url = {http://www.sciencedirect.com/science/article/pii/S0168583X1930165X}, abstract = {The start of operation of a new separator ACCULINNA-2 makes an important upgrade for the Radioactive-Ion Beam (RIB) research done at the Flerov Laboratory of Nuclear Reactions (FLNR, JINR). Test results indicate that the separator meets the project specifications. Intensities obtained for the 6,8He, 9,11Li, 12Be RIBs are 15 times higher in comparison with the results achieved at the old separator ACCULINNA. An overview of the design, construction and commissioning studies of the ACCULINNA-2 separator is presented. The separator will be equipped with some key facilities: a cryogenic tritium target, zero degree spectrometer following the physical target bombarded by the RIBs, and with a neutron detector array, and the Time Projection Chamber (TPC). This opens a wide range of experimental possibilities. Overview is presented on the two first experiments devoted to the study of d?+?6He elastic scattering and search for a 7H low-lying resonance state populated in the 2H(8He,3He)7H reaction.}, keywords = {Radioactive ion beams, In-flight separator, Energy degrader}, } @Article{Perey:1974, author = {C.M. Perey and F.G. Perey}, title = {Compilation of phenomenological optical-model parameters 1969-1972}, journal = {Atomic Data and Nuclear Data Tables}, year = {1974}, volume = {13}, number = {4}, pages = {293-337}, issn = {0092-640X}, doi = {https://doi.org/10.1016/0092-640X(74)90005-9}, url = {http://www.sciencedirect.com/science/article/pii/0092640X74900059}, abstract = {Presented here is a compilation, with bibliography, of optical-model parameters determined by fitting elastic-scattering angular distributions for various incident particles including heavy ions. Only parameters published in the period 1969-1972 are included.}, } @Misc{FRESCO, title = {FRESCO}, howpublished = {http://www.fresco.org.uk/index.htm}, } @Article{Daehnick:1980, author = {Daehnick, W. W. and Childs, J. D. and Vrcelj, Z.}, title = {Global optical model potential for elastic deuteron scattering from 12 to 90 MeV}, journal = {Phys. Rev. C}, year = {1980}, volume = {21}, issue = {6}, month = {Jun}, pages = {2253--2274}, doi = {10.1103/PhysRevC.21.2253}, url = {https://link.aps.org/doi/10.1103/PhysRevC.21.2253}, numpages = {0}, publisher = {American Physical Society}, } @Article{Pang:2015, author = {Pang, D. Y. and Dean, W. M. and Mukhamedzhanov, A. M.}, title = {Optical model potential of $A=3$ projectiles for $1p$-shell nuclei}, journal = {Phys. Rev. C}, year = {2015}, volume = {91}, issue = {2}, month = {Feb}, pages = {024611}, doi = {10.1103/PhysRevC.91.024611}, url = {https://link.aps.org/doi/10.1103/PhysRevC.91.024611}, numpages = {8}, publisher = {American Physical Society}, } @Article{Grigorenko:2021, author = {Grigorenko, L.V. and Sharov, P.G. and Wolski, R. and Muzalevskii, I.A. and Bezbakh, A.A. and Chudoba, V. and Fomichev, A.S. and Mukha, I. and Nikolskii, E. Yu. and Ter-Akopian, G. M. and Zhukov, M. V.}, title = {Resonant states in $^{7}$H. II. Theoretical background}, journal = {(to be submitted)}, year = {2023}, } @Article{Gurov:2007, author = {Gurov, Yu.B. and Chernyshev, B.A. and Isakov, S.V. and Karpukhin, V. S. and Lapushkin, S.V. and Laukhin, I. V. and Pechkurov, V. A. and Poroshin, N. O. and Sandukovsky, V.G.}, title = {Search for superheavy hydrogen isotopes $^6$H and $^7$H in stopped $\pi$-absorption reactions}, journal = {The European Physical Journal A}, year = {2007}, volume = {32}, number = {3}, pages = {261-266}, issn = {1434-601X}, doi = {10.1140/epja/i2007-10388-3}, url = {https://doi.org/10.1140/epja/i2007-10388-3}, } @Article{Aleksandrov:1984, author = {D.V. Aleksandrov and E.A. Ganza and Yu.A.Glukhov and B.G.Novatsky and A.A.Ogloblin and D.N.Stepanov}, title = {Observation of Nonstable Heavy Hydrogen Isotope 6H in the Reaction 7Li(7Li, 8B)}, journal = {Yad. Fiz.}, year = {1984}, volume = {39}, pages = {513}, } @Article{Evseev:1981, author = {V.S. Evseev and V.S. Kurbatov and V.M. Sidorov and V.B. Belyaev and J. Wrzecionko and M. Daum and R. Frosch and J. McCulloch and E. Steiner}, title = {Experimental study of $\pi^-$ double charge exchange with $^7$Li}, journal = {Nuclear Physics A}, year = {1981}, volume = {352}, number = {3}, pages = {379 - 387}, issn = {0375-9474}, doi = {https://doi.org/10.1016/0375-9474(81)90417-6}, url = {http://www.sciencedirect.com/science/article/pii/0375947481904176}, } @Article{Seth:1981, author = {K.K. Seth}, title = {Pionic Probes for Exotic Nuclei}, type = {resreport}, institution = {CERN, Geneva}, year = {1981}, number = {81-09-655}, } @Article{Fortier:2007, author = {Fortier, S. and Tryggestad, E. and Rich, E. and Beaumel, D. and Becheva, E. and Blumenfeld, Y. and Delaunay, F. and Drouart, A. and Fomichev, A. and Frascaria, N. and Gales, S. and Gaudefroy, L. and Gillibert, A. and Guillot, J. and Hammache, F. and Kemper, K. W. and Khan, E. and Lapoux, V. and Lima,V. and Nalpas, L. and Obertelli, A. and Pollacco, E. C. and Skaza, F. and Pramanik, U. Datta and Roussel-Chomaz, P. and Santonocito, D. and Scarpaci, J. A. and Sorlin, O. and Stepantsov, S. V. and Ter Akopian, G. M. and Wolski, R.}, title = {Search for resonances in 4n, 7H and 9He via transfer reactions}, doi = {10.1063/1.2746575}, eprint = {https://aip.scitation.org/doi/pdf/10.1063/1.2746575}, number = {1}, pages = {3-12}, url = {https://aip.scitation.org/doi/abs/10.1063/1.2746575}, volume = {912}, journal = {AIP Conference Proceedings}, year = {2007}, } @Article{Parlog:2002, author = {M. Parlog and B. Borderie and M.F. Rivet and G. Tabacaru and A. Chbihi and M. Elouardi and N. {Le Neindre} and O. Lopez and E. Plagnol and L. Tassan-Got and G. Auger and Ch.O. Bacri and N. Bellaize and F. Bocage and R. Bougault and B. Bouriquet and R. Brou and P. Buchet and J.L. Charvet and J. Colin and D. Cussol and R. Dayras and A. Demeyer and D. Dore and D. Durand and J.D. Frankland and E. Galichet and E. Genouin-Duhamel and E. Gerlic and S. Hudan and D. Guinet and P. Lautesse and F. Lavaud and J.L. Laville and J.F. Lecolley and C. Leduc and R. Legrain and M. Louvel and A.M. Maskay and L. Nalpas and J. Normand and J. Peter and E. Rosato and F. Saint-Laurent and J.C. Steckmeyer and B. Tamain and O. Tirel and E. Vient and C. Volant and J.P. Wieleczko}, title = {Response of CsI(Tl) scintillators over a large range in energy and atomic number of ions. Part II: calibration and identification in the INDRA array}, journal = {Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment}, year = {2002}, volume = {482}, number = {3}, pages = {693 - 706}, issn = {0168-9002}, doi = {https://doi.org/10.1016/S0168-9002(01)01712-0}, url = {http://www.sciencedirect.com/science/article/pii/S0168900201017120}, abstract = {The light output of the 324 CsI(Tl) scintillators of INDRA has been measured over large ranges in energy: 1-80AMeV and in atomic number of incident ions: Z=1-60. An analytical expression for the non-linear total light response as a function of the energy and the identity of the ion is developed. It depends on four parameters. For three of them, connected to CsI(Tl) intrinsic characteristics, fixed values are proposed. Two applications are presented: energy calibration and fragment identification in telescopes using a CsI(Tl) crystal as residual energy detector.}, keywords = {Light response of CsI(Tl) to heavy ions, Quenching, $\delta$-rays}, } @Article{Aoyama:2004, author = {S. Aoyama and N. Itagaki}, title = {Systematic analyses on H- and He-isotopes by using an extended AMD approach}, journal = {Nuclear Physics A}, year = {2004}, volume = {738}, pages = {362 - 366}, note = {Proceedings of the 8th International Conference on Clustering Aspects of Nuclear Structure and Dynamics}, issn = {0375-9474}, doi = {https://doi.org/10.1016/j.nuclphysa.2004.04.062}, url = {http://www.sciencedirect.com/science/article/pii/S0375947404006037}, } @Article{TerAkopian:2007, author = {Ter-Akopian, G. M. and Fomichev, A. S. and Golovkov, M. S. and Grigorenko, L. V. and Krupko, S. A. and Oganessian, Yu. Ts. and Rodin, A. M. and Sidorchuk, S. I. and Slepnev, R. S. and Stepantsov, S. V. and Wolski, R. and Korsheninnikov, A. A. and Nikolskii, E. Yu. and Roussel-Chomaz, P. and Mittig, W. and Kuzmin, V. A. and Novatskii, B. G. and Stepanov, D. N.}, title = {Neutron excess nuclei of hydrogen and helium at ACCULINNA}, journal = {The European Physical Journal Special Topics}, year = {2007}, volume = {150}, pages = {61-66}, doi = {10.1140/epjst/e2007-00267-7}, url = {https://doi.org/10.1140/epjst/e2007-00267-7}, } @Article{Muzalevskii:2020, author = {I.A. Muzalevskii and V. Chudoba and S.G. Belogurov and A.A. Bezbakh, D. Biare and A.S. Fomichev and S.A. Krupko and E.M.Gazeeva and M.S.Golovkov and A.V.Gorshkov and L.V.Grigorenko and G.Kaminski and O.Kiselev and D.A.Kostyleva and M.Yu.Kozlov and B.Mauyey and I.Mukha and E.Yu.Nikolskii and Yu.L.Parfenova and W.Piatek and A.M.Quynh and V.N.Schetinin and A.Serikov and S.I.Sidorchuk and P.G.Sharov and R.S.Slepnev and S.V.Stepantsov and A.Swiercz and P.Szymkiewicz and G.M.Ter-Akopian and R.Wolski and B.Zalewski}, title = {Detection of the Low Energy Recoil 3He in the Reaction 2H(8He, 3He)7H}, journal = {Bulletin of the Russian Academy of Sciences: Physics}, year = {2020}, volume = {84}, pages = {500-504}, doi = {10.3103/S106287382004019X}, url = {https://doi.org/10.3103/S106287382004019X}, } @Article{, abstract = {I examine the history and current state of knowledge of the structure of so-called “exotic” light nuclei with Z=2-4, from 7He to 16Be . I review the available experimental information and the models that have been applied to these nuclei. I pay particular attention to the interplay among energies, widths (or strengths), and microscopic structure. Throughout the presentation, I focus on a unified description of these nuclei. I point out contradictions within the data, and I suggest experiments that are still needed.}, } @Article{Belozyorov:1986, author = {A.V. Belozyorov and C. Borcea and Z. Dlouhy and A.M. Kalinin and R. Kalpakchieva and Nguyen Hoai Chau and Yu.Ts. Oganessian and Yu.E. Penionzhkevich}, title = {Search for 4H, 5H and 6H nuclei in the 11B-induced reaction on 9Be}, pages = {352-360}, volume = {460}, journal = {Nuclear Physics A}, year = {1986}, } @Article{Woods:1997, author = {P.J.~Woods and C.N.~Davis}, title = {Nuclei Beyond The Proton Drip-line}, pages = {541-590}, volume = {47}, journal = {Annu.\ Rev.\ Nucl.\ Part.\ Sci.}, year = {1997}, } @Article{Grigorenko:2020c, author = {L.V. Grigorenko and Yu.L. Parfenova and N.B. Shulgina and M.V. Zhukov}, title = {Asymptotic normalization coefficient method for two-proton radiative capture}, doi = {https://doi.org/10.1016/j.physletb.2020.135852}, issn = {0370-2693}, pages = {135852}, url = {http://www.sciencedirect.com/science/article/pii/S0370269320306559}, volume = {811}, abstract = {The method of asymptotic normalization coefficients is a standard approach for studies of two-body non-resonant radiative capture processes in nuclear astrophysics. This method suggests a fully analytical description of the radiative capture cross section in the low-energy region of the astrophysical interest. We demonstrate how this method can be generalized to the case of three-body 2p radiative captures. It was found that an essential feature of this process is the highly correlated nature of the capture. This reflects the complexity of three-body Coulomb continuum problem. Radiative capture 15O+p+p->17Ne+gamma is considered as an illustration.}, journal = {Physics Letters B}, keywords = {Asymptotic normalization coefficient method, Two-proton nonresonant radiative capture, E1 strength function, Three-body hyperspherical harmonic method}, year = {2020}, } @Article{Jones:2015, author = {Jones, M. D. and Kohley, Z. and Baumann, T. and Christian, G. and DeYoung, P. A. and Finck, J. E. and Frank, N. and Haring-Kaye, R. A. and Kuchera, A. N. and Luther, B. and Mosby, S. and Smith, J. K. and Snyder, J. and Spyrou, A. and Stephenson, S. L. and Thoennessen, M.}, title = {Further insights into the reaction $^{14}\mathrm{Be}(\mathrm{CH}{}_{2},X)^{10}\mathrm{He}$}, doi = {10.1103/PhysRevC.91.044312}, issue = {4}, pages = {044312}, url = {https://link.aps.org/doi/10.1103/PhysRevC.91.044312}, volume = {91}, journal = {Phys. Rev. C}, month = {Apr}, numpages = {6}, publisher = {American Physical Society}, year = {2015}, } @Article{Matta:2015, author = {Matta, A. and Beaumel, D. and Otsu, H. and Lapoux, V. and Timofeyuk, N. K. and Aoi, N. and Assi\'e, M. and Baba, H. and Boissinot, S. and Chen, R. J. and Delaunay, F. and de Sereville, N. and Franchoo, S. and Gangnant, P. and Gibelin, J. and Hammache, F. and Houarner, Ch. and Imai, N. and Kobayashi, N. and Kubo, T. and Kondo, Y. and Kawada, Y. and Khiem, L. H. and Kurata-Nishimura, M. and Kuzmin, E. A. and Lee, J. and Libin, J. F. and Motobayashi, T. and Nakamura, T. and Nalpas, L. and Nikolskii, E. Yu. and Obertelli, A. and Pollacco, E. C. and Rindel, E. and Rosier, Ph. and Saillant, F. and Sako, T. and Sakurai, H. and S\'anchez-Ben\'{\i}tez, A. M. and Scarpaci, J-A. and Stefan, I. and Suzuki, D. and Takahashi, K. and Takechi, M. and Takeuchi, S. and Wang, H. and Wolski, R. and Yoneda, K.}, title = {New findings on structure and production of $^{10}\mathrm{He}$ from $^{11}\mathrm{Li}$ with the $(d,^{3}\mathrm{He})$ reaction}, doi = {10.1103/PhysRevC.92.041302}, issue = {4}, pages = {041302}, url = {https://link.aps.org/doi/10.1103/PhysRevC.92.041302}, volume = {92}, journal = {Phys. Rev. C}, month = {Oct}, numpages = {6}, publisher = {American Physical Society}, year = {2015}, } @Article{, } @Article{Fortune:2018, author = {Fortune, H. T.}, date = {2018}, title = {Structure of exotic light nuclei: Z = 2, 3, 4}, doi = {10.1140/epja/i2018-12489-2}, pages = {51}, url = {https://doi.org/10.1140/epja/i2018-12489-2}, volume = {54}, abstract = {I examine the history and current state of knowledge of the structure of so-called “exotic” light nuclei with Z=2-4, from 7He to 16Be . I review the available experimental information and the models that have been applied to these nuclei. I pay particular attention to the interplay among energies, widths (or strengths), and microscopic structure. Throughout the presentation, I focus on a unified description of these nuclei. I point out contradictions within the data, and I suggest experiments that are still needed.}, journal = {Eur. Phys. J. A}, year = {2018}, } @Article{Muzalevskii:2021, author = {Muzalevskii, I. A. and Bezbakh, A. A. and Nikolskii, E. Yu. and Chudoba, V. and Krupko, S. A. and Belogurov, S. G. and Biare, D. and Fomichev, A. S. and Gazeeva, E. M. and Gorshkov, A. V. and Grigorenko, L. V. and Kaminski, G. and Kiselev, O. and Kostyleva, D. A. and Kozlov, M. Yu. and Mauyey, B. and Mukha, I. and Parfenova, Yu. L. and Piatek, W. and Quynh, A. M. and Schetinin, V. N. and Serikov, A. and Sidorchuk, S. I. and Sharov, P. G. and Shulgina, N. B. and Slepnev, R. S. and Stepantsov, S. V. and Swiercz, A. and Szymkiewicz, P. and Ter-Akopian, G. M. and Wolski, R. and Zalewski, B. and Zhukov, M. V.}, title = {Resonant states in $^{7}\mathrm{H}$: Experimental studies of the $^{2}\mathrm{H}(^{8}\mathrm{He},^{3}\mathrm{He})$ reaction}, doi = {10.1103/PhysRevC.103.044313}, issue = {4}, pages = {044313}, url = {https://link.aps.org/doi/10.1103/PhysRevC.103.044313}, volume = {103}, journal = {Phys. Rev. C}, month = {Apr}, numpages = {15}, publisher = {American Physical Society}, year = {2021}, } @Article{Korsheninnikov:1999, author = {Korsheninnikov, A. A. and Golovkov, M. S. and Ozawa, A. and Kuzmin, E. A. and Nikolskii, E. Yu. and Yoshida, K. and Novatskii, B. G. and Ogloblin, A. A. and Tanihata, I. and Fulop, Z. and Kusaka, K. and Morimoto, K. and Otsu, H. and Petrascu, H. and Tokanai, F.}, title = {Observation of an Excited State in $^{7}He$ with Unusual Structure}, doi = {10.1103/PhysRevLett.82.3581}, issue = {18}, pages = {3581--3584}, url = {https://link.aps.org/doi/10.1103/PhysRevLett.82.3581}, volume = {82}, journal = {Phys. Rev. Lett.}, month = {May}, numpages = {0}, publisher = {American Physical Society}, year = {1999}, } @Article{Seth:1991, author = {Seth, Kamal K. and Parker, Brett}, title = {Evidence for dineutrons in extremely neutron-rich nuclei}, doi = {10.1103/PhysRevLett.66.2448}, issue = {19}, pages = {2448--2451}, url = {https://link.aps.org/doi/10.1103/PhysRevLett.66.2448}, volume = {66}, journal = {Phys. Rev. Lett.}, month = {May}, numpages = {0}, publisher = {American Physical Society}, year = {1991}, } @Article{Wuosmaa:2017, author = {Wuosmaa, A. H. and Bedoor, S. and Brown, K. W. and Buhro, W. W. and Chajecki, Z. and Charity, R. J. and Lynch, W. G. and Manfredi, J. and Marley, S. T. and McNeel, D. G. and Newton, A. S. and Shetty, D. V. and Showalter, R. H. and Sobotka, L. G. and Tsang, M. B. and Winkelbauer, J. R. and Wiringa, R. B.}, title = {Ground-state properties of $^{5}\mathrm{H}$ from the $^{6}\mathrm{He}(d,^{3}\mathrm{He})^{5}\mathrm{H}$ reaction}, doi = {10.1103/PhysRevC.95.014310}, issue = {1}, pages = {014310}, url = {https://link.aps.org/doi/10.1103/PhysRevC.95.014310}, volume = {95}, journal = {Phys. Rev. C}, month = {Jan}, numpages = {11}, publisher = {American Physical Society}, year = {2017}, } @Article{Renzi:2016, author = {Renzi, F. and Raabe, R. and Randisi, G. and Smirnov, D. and Angulo, C. and Cabrera, J. and Casarejos, E. and Keutgen, Th. and Ninane, A. and Charvet, J. L. and Gillibert, A. and Lapoux, V. and Nalpas, L. and Obertelli, A. and Skaza, F. and Sida, J. L. and Orr, N. A. and Sidorchuk, S. I. and Wolski, R. and Borge, M. J. G. and Escrig, D.}, title = {Spectroscopy of $^{7}\mathbf{He}$ using the $^{9}\mathbf{Be}(^{6}\mathbf{He},^{8}\mathbf{Be})$ transfer reaction}, doi = {10.1103/PhysRevC.94.024619}, issue = {2}, pages = {024619}, url = {https://link.aps.org/doi/10.1103/PhysRevC.94.024619}, volume = {94}, journal = {Phys. Rev. C}, month = {Aug}, numpages = {11}, publisher = {American Physical Society}, year = {2016}, } @Article{Wuosmaa:2008, author = {Wuosmaa, A. H. and Schiffer, J. P. and Rehm, K. E. and Greene, J. P. and Henderson, D. J. and Janssens, R. V. F. and Jiang, C. L. and Jisonna, L. and Lighthall, J. C. and Marley, S. T. and Moore, E. F. and Pardo, R. C. and Patel, N. and Paul, M. and Peterson, D. and Pieper, Steven C. and Savard, G. and Segel, R. E. and Siemssen, R. H. and Tang, X. D. and Wiringa, R. B.}, title = {Structure of $^{7}\mathrm{He}$ by proton removal from $^{8}\mathrm{Li}$ with the ($d,{}^{3}\mathrm{He}$) reaction}, doi = {10.1103/PhysRevC.78.041302}, issue = {4}, pages = {041302}, url = {https://link.aps.org/doi/10.1103/PhysRevC.78.041302}, volume = {78}, journal = {Phys. Rev. C}, month = {Oct}, numpages = {5}, publisher = {American Physical Society}, year = {2008}, } @article{PARKER:1990483, title = {Search for superheavy hydrogen-6}, journal = {Physics Letters B}, volume = {251}, number = {4}, pages = {483-487}, year = {1990}, issn = {0370-2693}, doi = {https://doi.org/10.1016/0370-2693(90)90783-3}, url = {https://www.sciencedirect.com/science/article/pii/0370269390907833}, author = {B. Parker and Kamal K. Seth and R. Soundranayagam}, abstract = {A search has been made for the superheavy isotope of hydrogen, 6H, whose existence has been claimed in two heavy ion experiments. The pion double charge exchange reaction 6Li(??, ?+)X at T(??)= 220MeV was used in a high-resolution search for 6H. No evidence for 6H was found anywhere in the missing mass range ?10 to +30 MeV. In the missing mass region 0?5 MeV 95% confidence upper limits of 0?5 nb/sr for the production cross section were set.} } @Article{Gorbatov:1989, author = {A. M. Gorbatov P. V. Komarov, P. Yu. Nikishov, A. V. Germanov and D. V. Nechaev}, note = {[Yad. Fiz. 1551].}, pages = {962}, volume = {50}, journal = {Sov. J. Nucl. Phys.}, owner = {Leo}, timestamp = {2010. 08. 22}, year = {1989}, } @Article{Voitovetsky:1955, author = {V.K. Voitovetsky and et al.}, journal = {Sov. Phys. JETP}, year = {1955}, volume = {1}, pages = {2}, owner = {Leo}, timestamp = {2017-01-25} } @article{belozyorov:1988, title = {Search for the tri- and tetra-neutron in reactions induced by 11B and 9Be ions on 7Li}, journal = {Nuclear Physics A}, volume = {477}, number = {1}, pages = {131-142}, year = {1988}, issn = {0375-9474}, doi = {https://doi.org/10.1016/0375-9474(88)90365-X}, url = {https://www.sciencedirect.com/science/article/pii/037594748890365X}, author = {A.V. Belozyorov and C. Borcea and Z. Dlouhy and A.M. Kalinin and {Nguyen Hoai Chau} and Yu.E. Penionzhkevich}, keywords = {Nuclear Reactions}, abstract = {In three different heavy ion reactions the energy spectra of the 14O, 15O and 12N nuclei have been measured to obtain some information about their partners in the exit channel - the multineutron systems 4n and 3n. No evidence for the existence of any bound state in the multineutron systems has been obtained at the cross section level of 1 nb/MeV · sr achieved in the experiment. The phase-space analysis has given no positive results concerning the existence of quasistationary states in the 4n and 3n systems either.} } @article{Marques_PhysRev:2002, title = {Detection of neutron clusters}, author = {Marqu\'es, F. M. and Labiche, M. and Orr, N. A. and Ang\'elique, J. C. and Axelsson, L. and Benoit, B. and Bergmann, U. C. and Borge, M. J. G. and Catford, W. N. and Chappell, S. P. G. and Clarke, N. M. and Costa, G. and Curtis, N. and D'Arrigo, A. and de G\'oes Brennand, E. and de Oliveira Santos, F. and Dorvaux, O. and Fazio, G. and Freer, M. and Fulton, B. R. and Giardina, G. and Gr\'evy, S. and Guillemaud-Mueller, D. and Hanappe, F. and Heusch, B. and Jonson, B. and Le Brun, C. and Leenhardt, S. and Lewitowicz, M. and L\'opez, M. J. and Markenroth, K. and Mueller, A. C. and Nilsson, T. and Ninane, A. and Nyman, G. and Piqueras, I. and Riisager, K. and Laurent, M. G. Saint and Sarazin, F. and Singer, S. M. and Sorlin, O. and Stuttg\'e, L.}, journal = {Phys. Rev. C}, volume = {65}, issue = {4}, pages = {044006}, numpages = {10}, year = {2002}, month = {Apr}, publisher = {American Physical Society}, doi = {10.1103/PhysRevC.65.044006}, url = {https://link.aps.org/doi/10.1103/PhysRevC.65.044006} } @article{Kisamori:2016, title = {Candidate Resonant Tetraneutron State Populated by the $^{4}\mathrm{He}(^{8}\mathrm{He},^{8}\mathrm{Be})$ Reaction}, author = {Kisamori, K. and Shimoura, S. and Miya, H. and Michimasa, S. and Ota, S. and Assie, M. and Baba, H. and Baba, T. and Beaumel, D. and Dozono, M. and Fujii, T. and Fukuda, N. and Go, S. and Hammache, F. and Ideguchi, E. and Inabe, N. and Itoh, M. and Kameda, D. and Kawase, S. and Kawabata, T. and Kobayashi, M. and Kondo, Y. and Kubo, T. and Kubota, Y. and Kurata-Nishimura, M. and Lee, C. S. and Maeda, Y. and Matsubara, H. and Miki, K. and Nishi, T. and Noji, S. and Sakaguchi, S. and Sakai, H. and Sasamoto, Y. and Sasano, M. and Sato, H. and Shimizu, Y. and Stolz, A. and Suzuki, H. and Takaki, M. and Takeda, H. and Takeuchi, S. and Tamii, A. and Tang, L. and Tokieda, H. and Tsumura, M. and Uesaka, T. and Yako, K. and Yanagisawa, Y. and Yokoyama, R. and Yoshida, K.}, journal = {Phys. Rev. Lett.}, volume = {116}, issue = {5}, pages = {052501}, numpages = {5}, year = {2016}, month = {Feb}, publisher = {American Physical Society}, doi = {10.1103/PhysRevLett.116.052501}, url = {https://link.aps.org/doi/10.1103/PhysRevLett.116.052501} } @article{Higgins:2021, title = {Comprehensive study of the three- and four-neutron systems at low energies}, author = {Higgins, Michael D. and Greene, Chris H. and Kievsky, A. and Viviani, M.}, journal = {Phys. Rev. C}, volume = {103}, issue = {2}, pages = {024004}, numpages = {12}, year = {2021}, month = {Feb}, publisher = {American Physical Society}, doi = {10.1103/PhysRevC.103.024004}, url = {https://link.aps.org/doi/10.1103/PhysRevC.103.024004} } @article{Pieper:2003, title = {Can Modern Nuclear Hamiltonians Tolerate a Bound Tetraneutron?}, author = {Pieper, Steven C.}, journal = {Phys. Rev. Lett.}, volume = {90}, issue = {25}, pages = {252501}, numpages = {4}, year = {2003}, month = {Jun}, publisher = {American Physical Society}, doi = {10.1103/PhysRevLett.90.252501}, url = {https://link.aps.org/doi/10.1103/PhysRevLett.90.252501} } @article{Timofeyuk:2003b, doi = {10.1088/0954-3899/29/2/102}, url = {https://doi.org/10.1088/0954-3899/29/2/102}, year = 2003, month = {Jan}, publisher = {{IOP} Publishing}, volume = {29}, number = {2}, pages = {L9--L14}, author = {N. K. Timofeyuk}, title = {Do multineutrons exist?}, journal = {Journal of Physics G: Nuclear and Particle Physics}, abstract = {Following recent work in which events which may correspond to a bound tetraneutron (4n) were observed, it is pointed out that from the theoretical perspective the two-body nucleon?nucleon (NN) force cannot by itself bind four neutrons, even if it could bind a dineutron. Unrealistic modifications of the NN force or introduction of unreaslistic four-nucleon force would be needed in order to bind the tetraneutron. The existence of other multineutron systems is discussed.} } @article{Shirokov:2016, title = {Prediction for a Four-Neutron Resonance}, author = {Shirokov, A. M. and Papadimitriou, G. and Mazur, A. I. and Mazur, I. A. and Roth, R. and Vary, J. P.}, journal = {Phys. Rev. Lett.}, volume = {117}, issue = {18}, pages = {182502}, numpages = {6}, year = {2016}, month = {Oct}, publisher = {American Physical Society}, doi = {10.1103/PhysRevLett.117.182502}, url = {https://link.aps.org/doi/10.1103/PhysRevLett.117.182502} } @Book{Zagrebaev:2019, author = {V.I. Zagrebaev}, date = {2019}, title = {Heavy Ion Reactions at Low Energies}, doi = {10.1007/978-3-030-27217-3}, publisher = {Springer International Publishing}, } @article{GrigorenkoUFN:2019, doi = {10.3367/ufne.2018.07.038387}, url = {https://doi.org/10.3367/ufne.2018.07.038387}, year = 2019, month = {jul}, publisher = {Uspekhi Fizicheskikh Nauk ({UFN}) Journal}, volume = {62}, number = {7}, pages = {675--690}, author = {L. V. Grigorenko and B. Yu. Sharkov and A. S. Fomichev and A. L. Barabanov and W. Bart and A. A. Bezbakh and S. L. Bogomolov and M. S. Golovkov and A. V. Gorshkov and S. N. Dmitriev and V. K. Eremin and S. N. Ershov and M. V. Zhukov and I. V. Kalagin and A. V. Karpov and T. Katayama and O. A. Kiselev and A. A. Korsheninnikov and S. A. Krupko and T. V. Kulevoy and Yu. A. Litvinov and E. V. Lychagin and I. P. Maksimkin and I. N. Meshkov and I. G. Mukha and E. Yu. Nikolskii and Yu. L. Parfenova and V. V. Parkhomchuk and S. M. Polozov and M. Pfutzner and S. I. Sidorchuk and H. Simon and R. S. Slepnev and G. M. Ter-Akopian and G. V. Trubnikov and V. Chudoba and C. Scheidenberger and P. G. Sharov and P. Yu. Shatunov and Yu. M. Shatunov and V. N. Shvetsov and N. B. Shulgina and A. A. Yukhimchuk and S. Yaramyshev}, title = {Scientific program of {DERICA} -- prospective accelerator and storage ring facility for radioactive ion beam research}, journal = {Physics-Uspekhi}, abstract = {Studies of radioactive ions (RIs) are the most thriving field of low-energy nuclear physics. In this paper, the concept and the scientific agenda of the prospective accelerator and storage ring facility for RI beam (RIB) research are proposed for a large-scale international project based at the Flerov Laboratory of Nuclear Reactions of the Joint Institute for Nuclear Research. The motivation for the new facility is discussed and its characteristics are briefly presented and shown to be comparable to those of advanced world centers, the so-called ?RIB factories?. In the project, the emphasis is made on studies with short-lived RIBs in storage rings. A unique feature of the project is the possibility of studying electron?RI interactions in a collider experiment to determine the fundamental properties of nuclear matter, in particular, electromagnetic form factors of exotic nuclei.} } @article{Gorres:1995, title = {Bridging the waiting points: The role of two-proton capture reactions in the rp process}, author = {G\"orres, Joachim and Wiescher, Michael and Thielemann, Friedrich-Karl}, journal = {Phys. Rev. C}, volume = {51}, issue = {1}, pages = {392--400}, numpages = {0}, year = {1995}, month = {Jan}, publisher = {American Physical Society}, doi = {10.1103/PhysRevC.51.392}, url = {https://link.aps.org/doi/10.1103/PhysRevC.51.392} } @article{geissel:2003, title = {The Super-FRS project at GSI}, journal = {Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms}, volume = {204}, pages = {71-85}, year = {2003}, note = {14th International Conference on Electromagnetic Isotope Separators and Techniques Related to their Applications}, issn = {0168-583X}, doi = {https://doi.org/10.1016/S0168-583X(02)01893-1}, url = {https://www.sciencedirect.com/science/article/pii/S0168583X02018931}, author = {H. Geissel and H. Weick and M. Winkler and G. M{\"u}nzenberg and V. Chichkine and M. Yavor and T. Aumann and K.H. Behr and M. B{\"o}hmer and A. Br{\"u}nle and K. Burkard and J. Benlliure and D. Cortina-Gil and L. Chulkov and A. Dael and J.-E. Ducret and H. Emling and B. Franczak and J. Friese and B. Gastineau and J. Gerl and R. Gernh{\"a}user and M. Hellstr{\"o}m and B. Jonson and J. Kojouharova and R. Kulessa and B. Kindler and N. Kurz and B. Lommel and W. Mittig and G. Moritz and C. M{\"u}hle and J.A. Nolen and G. Nyman and P. Roussell-Chomaz and C. Scheidenberger and K.-H. Schmidt and G. Schrieder and B.M. Sherrill and H. Simon and K. S{\"u}mmerer and N.A. Tahir and V. Vysotsky and H. Wollnik and A.F. Zeller}, keywords = {Isotope separation in flight, Nuclear structure research, Exotic nuclear beams}, abstract = {The GSI projectile fragment separator FRS has demonstrated with many pioneering experiments the research potential of in-flight separators at relativistic energies. Although the present facility has contributed much to the progress in the field of nuclear structure physics, major improvements are desirable in the future. The characteristics of the proposed next-generation facility at GSI, the Super-FRS, will be presented and compared to other projects. The Super-FRS is a large-acceptance superconducting fragment separator followed by different experimental branches including a combination with a new storage-cooler ring system. This system consists of a collector ring (CR) and a new experimental storage ring (NESR) which allow precision mass and lifetime measurements as well as in-ring reaction studies. The NESR can be operated in combination with an electron ring to measure electron scattering with exotic nuclei. This electron heavy-ion collider will open up new fields for nuclear structure research.} } @article{winkler:2008, title = {The status of the Super-FRS in-flight facility at FAIR}, journal = {Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms}, volume = {266}, number = {19}, pages = {4183-4187}, year = {2008}, note = {Proceedings of the XVth International Conference on Electromagnetic Isotope Separators and Techniques Related to their Applications}, issn = {0168-583X}, doi = {https://doi.org/10.1016/j.nimb.2008.05.073}, url = {https://www.sciencedirect.com/science/article/pii/S0168583X08007015}, author = {M. Winkler and H. Geissel and H. Weick and B. Achenbach and K.-H. Behr and D. Boutin and A. Br{\"u}nle and M. Gleim and W. H{\"u}ller and C. Karagiannis and A. Kelic and B. Kindler and E. Kozlova and H. Leibrock and B. Lommel and G. Moritz and C. M{\"u}hle and G. M{\"u}nzenberg and C. Nociforo and W. Plass and C. Scheidenberger and H. Simon and K. S{\"u}mmerer and N.A. Tahir and A. Tauschwitz and M. Tomut and J.S. Winfield and M. Yavor}, keywords = {Fragment separator, Radioactive isotope beams, In-flight RI-beam facilities, Super-FRS, FAIR}, abstract = {The future international facility FAIR (Facility for Antiprotons and Ion Research) will deliver beams of all ions up to uranium with intensities of up to 1012 ions/s. At FAIR it will be possible to perform experiments in different fields of physics. A wide range of ions with energies up to 1.5AGeV will be used for the production of fragments by projectile fragmentation/fission at the in-flight fragment separator, Super-FRS. Rare isotopes of all elements up to uranium will be produced and spatially separated within a few hundred nanoseconds, enabling the study of very short-lived nuclei. The Super-FRS is a large-acceptance device utilizing large-aperture superconducting magnets and employing multiple degrader stages to provide monoisotopic nuclear beams. It serves different experimental branches including a new storage-cooler ring system. Because of high primary beam intensity a challenging design of the target area and the components used in the first dipole stage of the Super-FRS is necessary. These efforts include high-power production targets, beam dumps to catch the remaining primary beam and radiation resistant magnets. In this contribution we present the status of the project.} } @article{geissel:1992, title = {The GSI projectile fragment separator (FRS): a versatile magnetic system for relativistic heavy ions}, journal = {Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms}, volume = {70}, number = {1}, pages = {286-297}, year = {1992}, issn = {0168-583X}, doi = {https://doi.org/10.1016/0168-583X(92)95944-M}, url = {https://www.sciencedirect.com/science/article/pii/0168583X9295944M}, author = {H. Geissel and P. Armbruster and K.H. Behr and A. Br{\"u}nle and K. Burkard and M. Chen and H. Folger and B. Franczak and H. Keller and O. Klepper and B. Langenbeck and F. Nickel and E. Pfeng and M. Pf{\"u}tzner and E. Roeckl and K. Rykaczewski and I. Schall and D. Schardt and C. Scheidenberger and K.-H. Schmidt and A. Schr{\"o}ter and T. Schwab and K. S{\"u}mmerer and M. Weber and G. M{\"u}nzenberg and T. Brohm and H.-G. Clerc and M. Fauerbach and J.-J. Gaimard and A. Grewe and E. Hanelt and B. Kn{\"o}dler and M. Steiner and B. Voss and J. Weckenmann and C. Ziegler and A. Magel and H. Wollnik and J.P. Dufour and Y. Fujita and D.J. Vieira and B. Sherrill}, abstract = {The projectile fragment separator FRS designed for research and applied studies with relativistic heavy ions was installed at GSI as a part of the new high-energy SIS/ESR accelerator facility. This high-resolution forward spectrometer has been successfully used in first atomic and nuclear physics experiments using neon, argon, krypton, xenon, and gold beams in the energy range from 500 to 2000 MeV/u. For the first time relativistic xenon and gold fragments have been isotopically separated. In this contribution we describe first experiments characterizing the performance of this spectrometer.} } @article{gao:2015, title = {Experiments with Stored Highly Charged Ions at the Border between Atomic and Nuclear Physics}, journal = {Physics Procedia}, volume = {66}, pages = {28-38}, year = {2015}, note = {The 23rd International Conference on the Application of Accelerators in Research and Industry - CAARI 2014}, issn = {1875-3892}, doi = {https://doi.org/10.1016/j.phpro.2015.05.006}, url = {https://www.sciencedirect.com/science/article/pii/S1875389215001595}, author = {B.S. Gao and M.A. Najafi and D.R. Atanasov and K. Blaum and F. Bosch and C. Brandau and X.C. Chen and I. Dillmann and Ch. Dimopoulou and Th. Faestermann and P.-M. Hillenbrand and H. Geissel and R. Gernh{\"a}user and C. Kozhuharov and O. Kovalenko and S.A. Litvinov and Yu.A. Litvinov and L. Maier and F. Nolden and J. Piotrowski and M.S. Sanjari and U. Spillmann and M. Steck and Th. St{\"o}hlker and Ch. Trageser and X.L. Tu and H. Weick and N. Winckler and H.S. Xu and T. Yamaguchi and X.L. Yan and Y.H. Zhang and X.H. Zhou}, keywords = {Highly-charged ions, bound-state beta decay, orbital electron capture, heavy-ion storage rings}, abstract = {Atomic charge states can significantly influence nuclear decay rates. Presented is a compact overview of experiments conducted at the Experimental Storage Ring ESR of GSI addressing ?-decay of stored and cooled highly charged ions. Investigations of the two-body beta decay, namely the bound-state ?-decay and its time-mirrored counterpart, orbital electron-capture, are discussed in more details and a special emphasis is given to the future experiment on the bound-state ?-decay of fully-ionized 205Tl81+ nuclei.} } @article{kubo:2003, title = {In-flight RI beam separator BigRIPS at RIKEN and elsewhere in Japan}, journal = {Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms}, volume = {204}, pages = {97-113}, year = {2003}, note = {14th International Conference on Electromagnetic Isotope Separators and Techniques Related to their Applications}, issn = {0168-583X}, doi = {https://doi.org/10.1016/S0168-583X(02)01896-7}, url = {https://www.sciencedirect.com/science/article/pii/S0168583X02018967}, author = {Toshiyuki Kubo}, keywords = {Radioactive isotope beams, In-flight RI-beam facilities in Japan, RIKEN-RIPS, RIKEN-BigRIPS, In-flight fission, Tandem fragment separator, Large acceptance, Superconducting quadrupoles}, abstract = {Presented are features of the in-flight radioactive isotope (RI) beam separators in Japan as well as of a next-generation separator BigRIPS being built at RIKEN for the RI-beam factory project. Characteristic features and present status of the existing separators are reviewed for the RIPS at RIKEN, the Secondary Beam Line at RCNP, the Secondary Beam Course at NIRS, the CRIB at CNS and the RMS at JAERI. Design features are outlined for the BigRIPS, which is characterized by two major features: large acceptances and a tandem (or two-stage) separator scheme. The large acceptances allow one to produce RI beams efficiently by using in-flight fission of uranium ions, being achieved by using superconducting quadrupoles with a large aperture. The tandem separator scheme allows one to deliver tagged RI beam. The integrated capability of the BigRIPS and the accelerators of the project can significantly enlarge the scope of future RI-beam experiments. A low-energy course following the BigRIPS can provide energy-degraded and -bunched RI beams to be applied for a gas catcher system with an RF ion guide, aiming at realizing a projectile fragmentation based ISOL system.} } @article{cuttone:2007, title = {EXCYT: The RIB project at INFN-LNS}, journal = {Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms}, volume = {261}, number = {1}, pages = {1040-1043}, year = {2007}, note = {The Application of Accelerators in Research and Industry}, issn = {0168-583X}, doi = {https://doi.org/10.1016/j.nimb.2007.04.142}, url = {https://www.sciencedirect.com/science/article/pii/S0168583X07009445}, author = {G. Cuttone and L. Celona and F. Chines and G. Cosentino and E. Messina and M. Re and D. Rizzo and V. Scuderi and F. Tudisco and A. Amato and L. Calabretta and G. {De Luca} and A. Pappalardo and S. Passarello and D. Rifuggiato and A. Rovelli}, keywords = {Radioactive ion beams}, abstract = {The EXCYT facility at the INFN-LNS is based on a K-800 superconducting cyclotron, as a driver for stable heavy ion beams (up to 80MeV/amu, 1p?A), and on a 15MV tandem for post-accelerating the radioactive ion beams produced in a target-ion source (TIS) assembly. For some ion beam such as for Li, the higher extraction efficiency from the TIS is obtained by positive ionisation. Then the injection into the tandem is suitable only after a charge exchange (CEC) to obtain negative ions. The production of the radioactive ions were performed by injecting a 13C4+ primary beam of 45MeV/amu on a graphite target up to a beam power of 150W, while the ionisation was achieved by a tungsten positive surface ioniser. The Li+ has been produced at different energies to cross-check the transmission efficiency together with the charge exchange efficiency. The CEC consists of a cell containing Cs vapours which interact with the Li beam converting its charge from +1 to ?1 by a two-step reaction; it was already characterized off-line and the results obtained at the EXCYT facility confirm our previous observations and expectations such as the efficiency at the extraction energies and the isotopic shift effect. Hereinafter the results of 8,9Li beams production are reported together with a brief presentation of the facility and with some future improvements and plan.} } @Misc{www:isolde, title = {ISOLDE}, howpublished = {https://isolde.cern/}, } @article{Mukhin:2000, doi = {10.1070/pu2000v043n08abeh000802}, url = {https://doi.org/10.1070/pu2000v043n08abeh000802}, year = 2000, month = {aug}, publisher = {Uspekhi Fizicheskikh Nauk ({UFN}) Journal}, volume = {43}, number = {8}, pages = {799--839}, author = {Konstantin N Mukhin and O O Patarakin}, title = {Exotic processes in nuclear physics}, journal = {Physics-Uspekhi}, abstract = {This review is concerned with the modes of radioactivity and some other nuclear physics phenomena discovered comparatively a short time ago or long ago but simply less familiar that have something extraordinary about them either in terms of properties or in terms of observation (rare or even 'forbidden' occurrence, serendipitous discovery posing observational or interpretation challenges, requiring unique experimentation, or exotic in some other manner). The history of the discovery of such phenomena is presented, and their significance is discussed.} } @Book{Thompson:2009, author = {Thompson, Ian and Nunes, Filomena}, year = {2009}, month = {07}, pages = {}, title = {Nuclear Reactions for Astrophysics}, journal = {Nuclear Reactions for Astrophysics, by Ian J. Thompson , Filomena M. Nunes, Cambridge, UK: Cambridge University Press, 2009} } @Book{Satchler:1983, author = {Satchler, G.R.}, year = {1983}, month = {United Kingdom: Clarendon Press}, pages = {}, title = {Direct nuclear reactions}, journal = {Direct nuclear reactions, United Kingdom: Clarendon Press.} } @Book{Norman:1983, author = {Glendenning, Norman K.}, year = {1983}, month = { New York: Academic Press}, pages = {}, title = {Direct nuclear reactions}, journal = {Direct nuclear reactions, New York: Academic Press.} } @article{Gorshkov:2019, doi = {10.29317/ejpfm.2019030106}, url = {http://ephys.kz/index.php?view=article&id=145}, year = 2019, month = {march}, publisher = {Uspekhi Fizicheskikh Nauk ({UFN}) Journal}, volume = {3}, number = {1}, pages = {46--52}, author = {A.V. Gorshkov and S.G. Belogurov and A.A. Bezbakh, D. Biare and W. Beekman and V. Chudoba and A.S. Fomichev and M.S. Golovkov and E.M. Gazeeva and L.V. Grigorenko and G. Kaminski and S.A. Krupko and B. Mauyey and I.A. Muzalevsky and E.Yu. Nikolskii and Yu.L. Parfenova and A. Serikov and S.I. Sidorchuk and R.S. Slepnev and P.G. Sharov and G.M. Ter-Akopian and R.Wolski and B. Zalewski}, title = {Current status of the new fragment separator ACCULINNA-2 and the first-day experiments}, journal = {Eurasian journal of physics and functional materials}, abstract = {The commissioning of the new fragment separator ACCULINNA-2 at FLNR JINR is accomplished. The separator is destined to expand the possibilities in studies of dripline nuclei performed with the exotic secondary radioactive ion beams (RIBs) at energies of (5 ? 50) AMeV. The projected high transmission and purification level were confirmed experimentally for a number of RIBs in the last two years. The ACCULINNA-2 setup will become a backbone facility at FLNR for the research in the field of light exotic nuclei. This report shows the current status of the separator, describes the obtained RIBs parameters and first experiments as well, provides the overview of the developing detection, monitoring and control subsystems.} } @article{MBS:2000, author = {Essel, H.G. and Kurz, N.}, year = {2000}, month = {05}, pages = {337-339}, title = {The general purpose data acquisition system MBS}, volume = {47}, journal = {Nuclear Science, IEEE Transactions on}, doi = {10.1109/23.846176} } @book{Penionzhkevich:2016, author = {Penionzhkevich, Yu. E. and Kalpakchieva, R. G.}, title = {Light Exotic Nuclei Near the Boundary of Neutron Stability}, publisher = {WORLD SCIENTIFIC}, year = {2021}, doi = {10.1142/12433}, address = {}, edition = {}, URL = {https://www.worldscientific.com/doi/abs/10.1142/12433}, eprint = {https://www.worldscientific.com/doi/pdf/10.1142/12433} } @article{WoodsSaxon1954, title = {Diffuse Surface Optical Model for Nucleon-Nuclei Scattering}, author = {Woods, Roger D. and Saxon, David S.}, journal = {Phys. Rev.}, volume = {95}, issue = {2}, pages = {577--578}, numpages = {0}, year = {1954}, month = {Jul}, publisher = {American Physical Society}, doi = {10.1103/PhysRev.95.577}, url = {https://link.aps.org/doi/10.1103/PhysRev.95.577} } @Misc{NNDC, title = {National Nuclear Data Center, Brookhaven National Laboratory}, howpublished = {https://www.nndc.bnl.gov/}, } @book{landau1982mechanics, title={Mechanics: Volume 1}, author={Landau, L.D. and Lifshitz, E.M.}, number={1. 1}, isbn={9780080503479}, url={https://books.google.ru/books?id=bE-9tUH2J2wC}, year={1982}, publisher={Elsevier Science} } @book{Satchler:1983, author = {Satchler, G.R.}, title = {Direct nuclear reactions}, publisher = {United Kingdom: Clarendon Press}, year = {1983}, doi = {ISBN 0-19-851269-4}, address = {}, edition = {}, URL = {https://www.elsevier.com/books/direct-nuclear-reactions/glendenning/978-0-12-286320-2}, } @book{Leo:1994techniques, title={Techniques for Nuclear and Particle Physics Experiments: A How-to Approach}, author={Leo, W.R.}, isbn={9783540173861}, lccn={93038494}, url={https://books.google.ge/books?id=W7vHQgAACAAJ}, year={1994}, publisher={Springer} } @article{Shapiro:1967, author = {I. S. Shapiro}, title = {Some problems in the theory of nuclear reactions at high energies}, publisher = {Uspekhi Fizicheskikh Nauk}, year = {1967}, journal = {Usp. Fiz. Nauk}, volume = {92}, number = {8}, pages = {549-582}, url = {https://ufn.ru/ru/articles/1967/8/a/}, doi = {10.3367/UFNr.0092.196708a.0549} } @misc{er:ssd, title={Silicon Strip Detector calibration. http://er.jinr.ru/si\_detector\_calibration.html}, url={http://er.jinr.ru/si_detector_calibration.html}, journal={Silicon strip detector calibration - ExpertRoot documentation} } @article{weitzeker:1935, author = {Weizs\"acker, C. F.}, title = {Zur Theorie der Kernmassen}, publisher = {Zeitschrift f\"ur Physik}, year = {1935}, journal = {Zeitschrift f\"ur Physik}, volume = {92}, number = {8}, pages = {431-458}, doi = {https://doi.org/10.1007/BF01337700} } @misc{er:simone, title={SIMONE. http://aculina.jinr.ru/simone.html. Accessed: 2014-01-31.}, url={http://aculina.jinr.ru/simone.html}, journal={Accessed: 2014-01-31.} } @misc{GEANT4, title={GEANT4: A Simulation Toolkit. https://geant4.web.cern.ch/. Accessed August 15, 2019.}, url={https://geant4.web.cern.ch/}, journal={Accessed August 15, 2019.} } @misc{ROOT, title={ROOT:A Data Analysis Framework. http://root.cern.ch. Accessed 2014-01-31.}, url={https://geant4.web.cern.ch/}, journal={Accessed August 15, 2019.} } @article{TANIHATA:2013, title = {Recent experimental progress in nuclear halo structure studies}, journal = {Progress in Particle and Nuclear Physics}, volume = {68}, pages = {215-313}, year = {2013}, issn = {0146-6410}, doi = {https://doi.org/10.1016/j.ppnp.2012.07.001}, url = {https://www.sciencedirect.com/science/article/pii/S0146641012001081}, author = {Isao Tanihata and Herve Savajols and Rituparna Kanungo}, keywords = {Neutron halo, Unbound nuclei, Radioactive Nuclear Beams, Inverse reactions, Fragmentations, Transfer reactions}, abstract = {Recent developments (since the last review in J. of Physics G by I. Tanihata in 1996 [1]) at RIB facilities opened possibilities of detailed studies of halo nuclei. New facilities have been constructed to provide higher intensity beams of radioactive nuclei in a wide range of energies. At the time of the last review, only secondary beams by projectile fragmentation were the production source of halo nuclei for use in reaction studies. Since then, re-acceleration facilities have been developed and thus high-quality low-energy beams become available for the reaction studies. The wide variety of new data are thus available on halo nuclei and nuclei on and outside of proton and neutron drip lines. Low energy beams provided a means to determine the masses and charge radii of halo nuclei (6,8He, 11Li). Also transfer reactions have been measured in many nuclei far from the stability line. In fragmentation facilities, new experimental methods such as gamma ray detection in coincidence with breakup fragments of halo nuclei have been developed. Also the reaction cross sections have been measured in a wide range of beam energies. In addition, proton elastic scattering of halo nuclei has been measured at high energies. All together, studies of density distribution, identification of shell orbitals and spectroscopic factors of halo wave function became possible. Such studies reveal many new important information such as the change of magic numbers in nuclei far from the stability line. In this article, we would like to review the experimental developments on halo nuclei and other related drip line nuclei. Also the new view of the nuclear structure learned from such studies will be discussed. Development of selected theories on related nuclear structure problems will be mentioned briefly.} } @article{KORSHENINNIKOV:1997, title = {Scattering of radioactive nuclei 6He and 3H by protons: Effects of neutron skin and halo in 6He, 8He, and 11Li}, journal = {Nuclear Physics A}, volume = {617}, number = {1}, pages = {45-56}, year = {1997}, issn = {0375-9474}, doi = {https://doi.org/10.1016/S0375-9474(96)00492-7}, url = {https://www.sciencedirect.com/science/article/pii/S0375947496004927}, author = {A.A. Korsheninnikov and E.Yu. Nikolskii and C.A. Bertulani and S. Fukuda and T. Kobayashi and E.A. Kuzmin and S. Momota and B.G. Novatskii and A.A. Ogloblin and A. Ozawa and V. Pribora and I. Tanihata and K. Yoshida}, keywords = {Nuclear reactions}, abstract = {In an experimental study of 6He+p and 3H+p collisions at ?70 A MeV, the elastic scattering angular distributions were measured and the known excited state 6He1.8? was observed. Comparative analysis of existing experimental data on proton elastic scattering by 4He, 6He, 6Li, 8He, 9Li, and 11Li was performed. Effects of valence neutrons were investigated using the eikonal approach. A difference between 11Li and 6,8He was found.} } @article{LISE_PLUS_PLUS:2008, title = {LISE++: Radioactive beam production with in-flight separators}, journal = {Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms}, volume = {266}, number = {19}, pages = {4657-4664}, year = {2008}, note = {Proceedings of the XVth International Conference on Electromagnetic Isotope Separators and Techniques Related to their Applications}, issn = {0168-583X}, doi = {https://doi.org/10.1016/j.nimb.2008.05.110}, url = {https://www.sciencedirect.com/science/article/pii/S0168583X08007969}, author = {O.B. Tarasov and D. Bazin}, keywords = {Fragment separator, Radioactive ion beams, Beam optics, Projectile fragmentation, Abrasion?fission, Fission reactions}, abstract = {The program LISE++ is designed to predict intensity and purity for future experiments using radioactive beams with in-flight separators, and for tuning experiments where its results can be quickly compared to on-line data. The name LISE++ denotes the new generation of the LISE program, in which any separator can be built through the use of different sections labeled ?blocks?. Its user-friendly interface can be used to quickly construct many separator configurations from the available blocks. The LISE++ package already includes configuration files for most of the existing fragment and recoil separators such as the A1900 and the S800 at the NSCL, LISE3 at GANIL, FRS and SuperFRS at GSI, BigRIPS and RIPS at RIKEN. Projectile fragmentation, fusion?evaporation, fusion?fission, Coulomb fission, abrasion?fission and two body reactions models are included in this program and can be used as the production reaction mechanism to simulate experiments at beam energies above the Coulomb barrier. This program can be downloaded free of charge from the following web site: .} } @article{Geesaman:2006, author = {Geesaman, D.F. and Gelbke, C.K. and Janssens, R.V.F. and Sherrill, B.M.}, title = {Physics of a Rare Isotope Accelerator}, journal = {Annual Review of Nuclear and Particle Science}, volume = {56}, number = {1}, pages = {53-92}, year = {2006}, doi = {10.1146/annurev.nucl.55.090704.151604}, URL = { https://doi.org/10.1146/annurev.nucl.55.090704.151604 }, eprint = { https://doi.org/10.1146/annurev.nucl.55.090704.151604 } , abstract = { ? Abstract?Major progress in nuclear research and in observations of the cosmos has made it clear that critical issues in understanding the nucleus and astrophysical processes require abundant new sources of exotic nuclei, away from the realm of the stable ones. Recent advances in accelerator and isotope-production technology make access to these rare isotopes possible. This review examines the impact of the new reach in physics provided by a rare isotope accelerator in nuclear structure, astrophysics, and searches for physics beyond the standard model. We also touch briefly on some of the benefits of these isotopes for other important societal needs. } } @article{THOMPSON:1988167, title = {Coupled reaction channels calculations in nuclear physics}, journal = {Computer Physics Reports}, volume = {7}, number = {4}, pages = {167-212}, year = {1988}, issn = {0167-7977}, doi = {https://doi.org/10.1016/0167-7977(88)90005-6}, url = {https://www.sciencedirect.com/science/article/pii/0167797788900056}, author = {Ian J. Thompson} } @article{Daehnick:1980, title = {Global optical model potential for elastic deuteron scattering from 12 to 90 MeV}, author = {Daehnick, W. W. and Childs, J. D. and Vrcelj, Z.}, journal = {Phys. Rev. C}, volume = {21}, issue = {6}, pages = {2253--2274}, numpages = {0}, year = {1980}, month = {Jun}, publisher = {American Physical Society}, doi = {10.1103/PhysRevC.21.2253}, url = {https://link.aps.org/doi/10.1103/PhysRevC.21.2253} } @article{Brida:2011, title = {Quantum Monte Carlo calculations of spectroscopic overlaps in $A\ensuremath{\leqslant}7$ nuclei}, author = {Brida, I. and Pieper, Steven C. and Wiringa, R. B.}, journal = {Phys. Rev. C}, volume = {84}, issue = {2}, pages = {024319}, numpages = {15}, year = {2011}, month = {Aug}, publisher = {American Physical Society}, doi = {10.1103/PhysRevC.84.024319}, url = {https://link.aps.org/doi/10.1103/PhysRevC.84.024319} } @article{Yuan:2012, title = {Shell-model study of boron, carbon, nitrogen, and oxygen isotopes with a monopole-based universal interaction}, author = {Yuan, Cenxi and Suzuki, Toshio and Otsuka, Takaharu and Xu, Furong and Tsunoda, Naofumi}, journal = {Phys. Rev. C}, volume = {85}, issue = {6}, pages = {064324}, numpages = {12}, year = {2012}, month = {Jun}, publisher = {American Physical Society}, doi = {10.1103/PhysRevC.85.064324}, url = {https://link.aps.org/doi/10.1103/PhysRevC.85.064324} } @article{Nikolskii:2022, title = {$^{6}\mathrm{H}$ states studied in the $^{2}\mathrm{H}(^{8}\mathrm{He},^{4}\mathrm{He})$ reaction and evidence of an extremely correlated character of the $^{5}\mathrm{H}$ ground state}, author = {Nikolskii, E. Yu. and Muzalevskii, I. A. and Bezbakh, A. A. and Chudoba, V. and Krupko, S. A. and Belogurov, S. G. and Biare, D. and Fomichev, A. S. and Gazeeva, E. M. and Gorshkov, A. V. and Grigorenko, L. V. and Kaminski, G. and Khirk, M. and Kiselev, O. and Kostyleva, D. A. and Kozlov, M. Yu. and Mauyey, B. and Mukha, I. and Parfenova, Yu. L. and Piatek, W. and Quynh, A. M. and Schetinin, V. N. and Serikov, A. and Sidorchuk, S. I. and Sharov, P. G. and Shulgina, N. B. and Slepnev, R. S. and Stepantsov, S. V. and Swiercz, A. and Szymkiewicz, P. and Ter-Akopian, G. M. and Wolski, R. and Zalewski, B. and Zhukov, M. V.}, journal = {Phys. Rev. C}, volume = {105}, issue = {6}, pages = {064605}, numpages = {15}, year = {2022}, month = {Jun}, publisher = {American Physical Society}, doi = {10.1103/PhysRevC.105.064605}, url = {https://link.aps.org/doi/10.1103/PhysRevC.105.064605} } @article{WILLARD1964339, title = {N-D scattering: A search for effects due to the dineutron}, journal = {Physics Letters}, volume = {9}, number = {4}, pages = {339-341}, year = {1964}, issn = {0031-9163}, doi = {https://doi.org/10.1016/0031-9163(64)90390-7}, url = {https://www.sciencedirect.com/science/article/pii/0031916364903907}, author = {H.B. Willard and J.K. Bair and C.M. Jones} } @Comment{jabref-meta: databaseType:biblatex;}