论文标题

球形核中总水平密度的完全显微镜模型

A fully microscopic model of total level density in spherical nuclei

论文作者

Hung, N. Quang, Dang, N. Dinh, Phuc, L. Tan, Anh, N. Ngoc, Xuan, T. Dong, Hao, T. V. Nhan

论文摘要

提出了用于描述球形核中核水平密度(NLD)的完全显微镜模型。该模型是通过将精确配对解决方案的分区功能以及在有限温度(EP+IPM)下的独立粒子模型与使用从自符敏的Hartree均值平均场与MSK3相互作用与精确的配对和随机强调(SC-HFEPRPA)获得的集体振动状态(SC-HFEPRPA)相结合的。以完全显微镜的方式考虑了两个重要因素,即旋转截止和振动增强因子分别使用SC-HFEPRPA的统计热力学和分区功能计算得出,而无需任何拟合参数。两个球形$^{60} $ ni和$^{90} $ zr核的数值测试表明,集体振动增强大多由四极杆和八极激发主导。这是证实这种效果的第一个微观模型,该模型很久以前就在现象学上预测,并广泛用于几种NLD模型中。此外,还通过使用所提出的模型研究了集体振动增强对核热力学量(例如激发能,比热容量和熵)的影响。

A fully microscopic model for the description of nuclear level density (NLD) in spherical nuclei is proposed. The model is derived by combining the partition function of the exact pairing solution plus the independent-particle model at finite temperature (EP+IPM) with that obtained by using the collective vibrational states calculated from the self-consistent Hartree-Fock mean field with MSk3 interaction plus the exact pairing and random-phases approximation (SC-HFEPRPA). Two important factors are taken into account in a fully microscopic way, namely the spin cut-off and vibrational enhancement factors are, respectively, calculated using the statistical thermodynamics and partition function of the SC-HFEPRPA without any fitting parameters. The numerical test for two spherical $^{60}$Ni and $^{90}$Zr nuclei shows that the collective vibrational enhancement is mostly dominated by the quadrupole and octupole excitations. This is the first microscopic model confirming such an effect, which was phenomenologically predicted long time ago and widely employed in several NLD models. In addition, the influence of collective vibrational enhancement on nuclear thermodynamic quantities such as excitation energy, specific heat capacity and entropy is also studied by using the proposed model.

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