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Octupole deformations in high-K isomeric states of heavy and superheavy nuclei

机译:高k异常核心octupole变形核心核

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We study the effects of quadrupole-octupole deformations on the energy and magnetic properties of high-K isomeric states in even-even heavy and superheavy nuclei. The neutron two-quasiparticle (2qp) isomeric energies and magnetic dipole moments are calculated within a deformed shell model with the Bardeen-Cooper-Schrieffer (BCS) pairing interaction over a wide range of quadrupole and octupole deformations. We found that in most cases the magnetic moments exhibit a pronounced sensitivity to the octupole deformation, while the 2qp energies indicate regions of nuclei in which the presence of high-K isomeric states may be associated with the presence of octupole softness or even with octupole deformation. In the present work we also examine the influence of the BCS pairing strength on the energy of the blocked isomer configuration. We show that the formation of 2qp energy minima in the space of quadrupole-octupole and eventually higher multipolarity deformations is a subtle effect depending on nuclear pairing correlations.
机译:我们研究了四轴 - octupole变形对甚至甚至沉重的核的高k异构状态能量和磁性的影响。中子两Quasiparticle(2QP)异构能量和磁性偶极矩在变形的壳模型内计算,具有Bardeen-Cooper-Schrieffer(BCS)在各种四极和octupole变形上的配对相互作用。我们发现在大多数情况下,在大多数情况下,磁矩表现出对Octupole变形的明显敏感性,而2QP能量表示高k异构状态的存在的细胞区域可以与octupole柔软度的存在相关,甚至是Octupole变形的存在相关。在本工作中,我们还研究了BCS配对强度对阻塞异构形构造能量的影响。我们表明,在四元overupole的空间中形成了2QP能量最小值,并且最终更高的多极性变形是根据核配对相关性的微妙效应。

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