论文标题
连续体中变形相对论的Hartree-Bogoliubov理论中的核质量表:I。均匀的核
Nuclear mass table in deformed relativistic Hartree-Bogoliubov theory in continuum: I. even-even nuclei
论文作者
论文摘要
使用密度pc-pk1密度的continuum(drhbc)中的变形相对论的hartree-bogoliubov理论,已经研究了使用质子滴注线到中子滴注线的均匀核的地面特性。由于变形和连续体的效果同时包括2583个偶数核的结合。计算出的结合能,两个核子分离能,中子,质子,物质和电荷分布的根平方(RMS)半径,四极杆变形以及中子和质子费米表面与可用的实验数据相比。与637个质量数据的RMS偏差为1.518 MEV,为核质量提供了最佳的微观描述之一。将从DRHBC计算获得的滴水线与其他计算进行了比较,包括带有PC-PK1的球形相对论Continuum Hartree-Bogoliubov(RCHB)和三轴相对论Hartree-Bogoliubov(TRHB)计算。讨论了对核景观极限的变形和连续性影响。预计将预测由两种独立滴水线以外的结合核组成的半岛。还讨论了两种核子分离能,两核子间隙,RMS半径,四极杆变形,势能曲线,中子密度,中子平均电场电位和DRHBC计算中的配对能量的系统学。此外,提取的$α$衰减能与可用数据非常吻合。
Ground-state properties of even-even nuclei with $8\le Z\le120$ from the proton drip line to the neutron drip line have been investigated using the deformed relativistic Hartree-Bogoliubov theory in continuum (DRHBc) with the density functional PC-PK1. With the effects of deformation and continuum included simultaneously, 2583 even-even nuclei are predicted to be bound. The calculated binding energies, two-nucleon separation energies, root-mean-square (rms) radii of neutron, proton, matter, and charge distributions, quadrupole deformations, and neutron and proton Fermi surfaces are tabulated and compared with available experimental data. The rms deviation from the 637 mass data is 1.518 MeV, providing one of the best microscopic descriptions for nuclear masses. The drip lines obtained from DRHBc calculations are compared with other calculations, including the spherical relativistic continuum Hartree-Bogoliubov (RCHB) and triaxial relativistic Hartree-Bogoliubov (TRHB) calculations with PC-PK1. The deformation and continuum effects on the limits of the nuclear landscape are discussed. Possible peninsulas consisting of bound nuclei beyond the two-neutron drip line are predicted. The systematics of the two-nucleon separation energies, two-nucleon gaps, rms radii, quadrupole deformations, potential energy curves, neutron densities, neutron mean-field potentials, and pairing energies in the DRHBc calculations are also discussed. In addition, the $α$ decay energies extracted are in good agreement with available data.