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Probing surface quantum flows in deformed pygmy dipole modes

机译:探测表面量子在变形的侏儒偶极模式中流动

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摘要

To explore the nature of collective modes in weakly bound nuclei, we have investigated deformation effects and surface flowpatterns of isovector dipole modes in a shape-coexisting nucleus, ~(40)Mg. The calculations were done in a fully self-consistent continuum finite-amplitude quasiparticle random phase approximation in a large deformed spatial mesh. An unexpected result of pygmy and giant dipole modes having disproportionate deformation splittings in strength functions was obtained. Furthermore, the transition current densities demonstrate that the long-sought core-halo oscillation in pygmy resonances is collective and compressional, corresponding to the lowest excitation energy and the simplest quantum flow topology. Our calculations show that surface flow patterns become more complicated as excitation energies increase.
机译:为了探讨弱束细胞核中集体模式的性质,我们在形状共存核中进行了对等膜偶极模式的变形效果和表面流动模板,〜(40)Mg。 在大变形的空间网格中,在完全自我一致的连续体有限振幅Quasiparticle随机相位近似进行计算。 获得了强度功能中具有不成比例的变形分裂的侏儒和巨大偶极模式的意外结果。 此外,过渡电流密度表明,侏儒共振中的长寻求核心 - 光环振荡是集体和压缩,对应于最低激发能量和最简单的量子流拓扑。 我们的计算表明,随着励磁能量的增加,表面流动模式变得更加复杂。

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