论文标题
连续耦合功能的变形相对论Hartree-Bogoliubov理论:均匀的同位素的示例
Deformed relativistic Hartree-Bogoliubov theory in continuum with point coupling functional: examples of even-even Nd isotopes
论文作者
论文摘要
这项工作的目的是基于点耦合密度函数来开发连续体(DRHBC)理论中变形的相对论Hartree-Bogoliubov理论,并通过克服所有可能的挑战来扩展其扩展其对核图表中所有均匀核的统一描述。通过Bogoliubov转化考虑核超流体。密度和电势从传说中的多项式扩展到包括轴向变形的自由度。坐标空间中的复杂相对论的Hartree-Bogoliubov方程在Diracwoods-Saxon的基础上解决了,以考虑连续效应。数值检查是从光核到重核进行的。探索了构造DRHBC质量表的技术。 DRHBC理论扩展到研究镁同位素以外的较重的核。以ND同位素为例,实验结合能,两种中子分离能,四极变形和电荷半径的复制相当好。变形和连续体在描述核质量和滴水核的预测中起着至关重要的作用。通过在规范的基础上检查单粒子水平及其对总密度,中子皮肤的厚度,连续体中的颗粒数和库仑屏障的贡献,可以预测包括中子皮肤和质子放射性在内的外来结构。
The aim of this work is to develop the deformed relativistic Hartree-Bogoliubov theory in continuum (DRHBc) theory based on the point-coupling density functionals and extend it to provide a unified description for all even-even nuclei in the nuclear chart by overcoming all possible challenges. The nuclear superfluidity is considered via Bogoliubov transformation. Densities and potentials are expanded in terms of Legendre polynomials to include the axial deformation degrees of freedom. Sophisticated relativistic Hartree-Bogoliubov equations in coordinate space are solved in the DiracWoods-Saxon basis to consider the continuum effects. Numerical checks are performed from light nuclei to heavy nuclei. The techniques to construct the DRHBc mass table for even-even nuclei are explored. The DRHBc theory is extended to study heavier nuclei beyond magnesium isotopes. Taking Nd isotopes as examples, the experimental binding energies, two-neutron separation energies, quadrupole deformations, and charge radii are reproduced rather well. The deformation and continuum play essential roles in the description of nuclear masses and prediction of drip-line nuclei. By examining the single-particle levels in the canonical basis and their contributions to the total density, the thickness of the neutron skin, the particles number in continuum, and the Coulomb barrier, the exotic structures including the neutron skin and the proton radioactivity are predicted.