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arXiv:0809.0169 [nucl-th]AbstractReferencesReviewsResources

Deformed quasiparticle-random-phase approximation for neutron-rich nuclei using the Skyrme energy density functional

Kenichi Yoshida, Nguyen Van Giai

Published 2008-09-01Version 1

We develop a new framework of the deformed quasiparticle-random-phase approximation (QRPA) where the Skyrme density functional and the density-dependent pairing functional are consistently treated. Numerical applications are carried out for the isovector dipole and the isoscalar quadrupole modes in the spherical $^{20}$O and in the deformed $^{26}$Ne nuclei, and the effect of the momentum dependent terms of the Skyrme effective interaction for the energy-weighted sum rule is discussed. As a further application, we present for the first time the moments of inertia of $^{34}$Mg and $^{36}$Mg using the Thouless-Valatin procedure based on the self-consistent deformed QRPA, and show the applicability of our new calculation scheme not only for the vibrational modes but also for the rotational modes in neutron-rich nuclei.

Comments: 11 pages, 13 figures and 2 tables. Submitted to PRC
Journal: Phys.Rev.C78:064316,2008
Categories: nucl-th
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