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dc.contributor.author한인식*
dc.date.accessioned2016-08-29T11:08:57Z-
dc.date.available2016-08-29T11:08:57Z-
dc.date.issued2009*
dc.identifier.issn0556-2813*
dc.identifier.otherOAK-5743*
dc.identifier.urihttps://dspace.ewha.ac.kr/handle/2015.oak/231981-
dc.description.abstractThe soft-rotator model is applied to self-consistent analyses of the nuclear level structures and the nucleon interaction data of the even-even Sn isotopes, Sn116, Sn118, Sn120, and Sn122. The model successfully describes low-lying collective levels of these isotopes, which exhibit neither typical rotational nor harmonic vibrational structures. The experimental nucleon interaction data-total neutron cross sections, proton reaction cross sections, and nucleon elastic and inelastic scattering data-are well described up to 200 MeV in a coupled-channels optical model approach. For the calculations, nuclear wave functions for the Sn isotopes are taken from the nonaxial soft-rotator model with the model parameters adjusted to fit the measured low-lying collective level structures. We find that the β2 and β3 deformations for incident protons are larger than those for incident neutrons by ~15%, which is clear evidence of the deviation from the pure collective model for these isotopes. © 2009 The American Physical Society.*
dc.languageEnglish*
dc.titleOptical potentials for nuclear level structures and nucleon interactions data of tin isotopes based on the soft-rotator model*
dc.typeArticle*
dc.relation.issue6*
dc.relation.volume79*
dc.relation.indexSCI*
dc.relation.indexSCIE*
dc.relation.indexSCOPUS*
dc.relation.journaltitlePhysical Review C - Nuclear Physics*
dc.identifier.doi10.1103/PhysRevC.79.064612*
dc.identifier.wosidWOS:000267701200047*
dc.identifier.scopusid2-s2.0-67650168754*
dc.author.googleLee J.-Y.*
dc.author.googleHahn I.*
dc.author.googleKim Y.*
dc.author.googleHong S.-W.*
dc.author.googleChiba S.*
dc.author.googleSoukhovitskii E.S.*
dc.contributor.scopusid한인식(7201832280;57205469686;57192312712)*
dc.date.modifydate20240415134453*


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