Temperature dependence of the isovector dipole response for asymmetric spherical nuclei: a kinetic-theory approach

Semiclassical approach based on the solution of the Vlasov kinetic equation for finite two-component systems with a moving surface is generalized for the study of the isovector dipole resp of excited neutron-rich spherical nuclei. The temperature effects are taken into account through the collisio...

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Main Authors: V. I. Abrosimov, O. I. Davidovskaya
Format: Article
Language:English
Published: Institute for Nuclear Research, National Academy of Sciences of Ukraine 2006-12-01
Series:Âderna Fìzika ta Energetika
Online Access:http://jnpae.kinr.kiev.ua/18(2)/Articles_PDF/jnpae-2006-2(18)-0027-Abrosimov_fin.pdf
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author V. I. Abrosimov
O. I. Davidovskaya
author_facet V. I. Abrosimov
O. I. Davidovskaya
author_sort V. I. Abrosimov
collection DOAJ
description Semiclassical approach based on the solution of the Vlasov kinetic equation for finite two-component systems with a moving surface is generalized for the study of the isovector dipole resp of excited neutron-rich spherical nuclei. The temperature effects are taken into account through the collision integral in the relaxation time approximation. It is shown that, by taking into account the dynamical surface effects, it is possible to obtain an exact treatment of the centre of mass motion for isovector dipole excitations of neutron-proton asymmetric systems. It is found that the width of giant dipole resonance grows with the temperature increase in the approximation of rare collisions between nucleons.
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spelling doaj.art-ee730b4606c2473ca60c5db87af92da52022-12-21T19:08:54ZengInstitute for Nuclear Research, National Academy of Sciences of UkraineÂderna Fìzika ta Energetika1818-331X2074-05652006-12-0172(18)2733Temperature dependence of the isovector dipole response for asymmetric spherical nuclei: a kinetic-theory approachV. I. Abrosimov0O. I. Davidovskaya1Institute for Nuclear Research, National Academy of Sciences of Ukraine, Kyiv, UkraineInstitute for Nuclear Research, National Academy of Sciences of Ukraine, Kyiv, UkraineSemiclassical approach based on the solution of the Vlasov kinetic equation for finite two-component systems with a moving surface is generalized for the study of the isovector dipole resp of excited neutron-rich spherical nuclei. The temperature effects are taken into account through the collision integral in the relaxation time approximation. It is shown that, by taking into account the dynamical surface effects, it is possible to obtain an exact treatment of the centre of mass motion for isovector dipole excitations of neutron-proton asymmetric systems. It is found that the width of giant dipole resonance grows with the temperature increase in the approximation of rare collisions between nucleons.http://jnpae.kinr.kiev.ua/18(2)/Articles_PDF/jnpae-2006-2(18)-0027-Abrosimov_fin.pdf
spellingShingle V. I. Abrosimov
O. I. Davidovskaya
Temperature dependence of the isovector dipole response for asymmetric spherical nuclei: a kinetic-theory approach
Âderna Fìzika ta Energetika
title Temperature dependence of the isovector dipole response for asymmetric spherical nuclei: a kinetic-theory approach
title_full Temperature dependence of the isovector dipole response for asymmetric spherical nuclei: a kinetic-theory approach
title_fullStr Temperature dependence of the isovector dipole response for asymmetric spherical nuclei: a kinetic-theory approach
title_full_unstemmed Temperature dependence of the isovector dipole response for asymmetric spherical nuclei: a kinetic-theory approach
title_short Temperature dependence of the isovector dipole response for asymmetric spherical nuclei: a kinetic-theory approach
title_sort temperature dependence of the isovector dipole response for asymmetric spherical nuclei a kinetic theory approach
url http://jnpae.kinr.kiev.ua/18(2)/Articles_PDF/jnpae-2006-2(18)-0027-Abrosimov_fin.pdf
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