论文标题

连续体中有变形的相对论Hartree-Bogoliubov理论具有点耦合功能。 ii。奇数ND同位素的示例

Deformed relativistic Hartree-Bogoliubov theory in continuum with a point-coupling functional. II. Examples of odd Nd isotopes

论文作者

DRHBc Mass Table Collaboration, Pan, Cong, Cheoun, Myung-Ki, Choi, Yong-Beom, Dong, Jianmin, Du, Xiaokai, Fan, Xiao-Hua, Gao, Wei, Geng, Lisheng, Ha, Eunja, He, Xiao-Tao, Huang, Jinke, Huang, Kun, Kim, Seonghyun, Kim, Youngman, Lee, Chang-Hwan, Lee, Jenny, Li, Zhipan, Liu, Zhi-Rui, Ma, Yiming, Meng, Jie, Mun, Myeong-Hwan, Niu, Zhongming, Papakonstantinou, Panagiota, Shang, Xinle, Shen, Caiwan, Shen, Guofang, Sun, Wei, Sun, Xiang-Xiang, Wu, Jiawei, Wu, Xinhui, Xia, Xuewei, Yan, Yijun, Yiu, To Chung, Zhang, Kaiyuan, Zhang, Shuangquan, Zhang, Wei, Zhang, Xiaoyan, Zhao, Qiang, Zheng, Ruyou, Zhou, Shan-Gui

论文摘要

这项工作的目的是将基于点耦合密度函数的连续体(DRHBC)中的变形相对论Hartree-Bogoliubov理论扩展到奇数 - $ a $ a $ a $ a $ a $ a $ a $ a $ a $ a $ a $ a $ a $ a $ nd iSotopes作为示例。在DRHBC理论中,具有轴向变形的密度和电势以legendre多项式扩展,并且相对论的Hartree-Bogoliubov方程在Dirac Woods-Saxon的基础上求解,以包括连续性效应。对于奇数$ a $或奇数核,考虑到均等的填充近似值,未配对核子的阻塞效应被考虑在内。为了确定其基态,采用了自动阻塞程序,其中迭代期间具有最低准粒子能量的轨道被阻塞。通过与轨道固定阻塞计算的结果进行比较,该过程是合理的,其中在迭代过程中,在费米表面附近的阻塞轨道是固定的。可以通过自动阻塞程序作为轨道固定的阻塞程序来提供光和重核的基态,但计算成本大大降低。发现偶数核的数值细节也适用于奇数 - $ a $和奇数核。将ND同位素包括在内的偶数和奇数 - $ a $作为示例,具有PC-PK1的计算基础属性与可用的实验数据非常吻合。这项工作铺平了构建DRHBC质量表的方法,其中包括核图表中所有偶数,奇数 - $ a $和奇数核。

The aim of this work is to extend the deformed relativistic Hartree-Bogoliubov theory in continuum (DRHBc) based on the point-coupling density functionals to odd-$A$ and odd-odd nuclei and examine its applicability by taking odd-$A$ Nd isotopes as examples. In the DRHBc theory, the densities and potentials with axial deformation are expanded in terms of Legendre polynomials, and the relativistic Hartree-Bogoliubov equations are solved in a Dirac Woods-Saxon basis to include the continuum effects. For an odd-$A$ or odd-odd nucleus, the blocking effect of unpaired nucleon(s) is taken into account with the equal filling approximation. To determine its ground state, an automatic blocking procedure is adopted, in which the orbital with the lowest quasiparticle energy is blocked during the iteration. This procedure is justified by comparing with the results from the orbital-fixed blocking calculations, in which the blocked orbital near the Fermi surface is fixed during the iteration. The ground states for both light and heavy nuclei can be provided by the automatic blocking procedure as the orbital-fixed blocking procedure, but with considerably reduced computational cost. The numerical details for even-even nuclei are found to be valid for odd-$A$ and odd-odd nuclei as well. Taking Nd isotopes including both even-even and odd-$A$ ones as examples, the calculated ground-state properties with PC-PK1 are in good agreement with the available experimental data. This work paves the way to construct the DRHBc mass table including all even-even, odd-$A$ and odd-odd nuclei in the nuclear chart.

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