论文标题
镜子核的电荷半径差异等异种对称性破裂
Isospin symmetry breaking in the charge radius difference of mirror nuclei
论文作者
论文摘要
使用$ {}^{48} $ ca和$ {}^{48} $ ni的测试示例研究了镜像核的电荷半径差$Δr_ {\ rm ch} $中的Isospin对称破坏(ISB)效应。这种选择允许对ISB的贡献进行透明的研究,因为在此特定对中,可以忽略镜像核研究所需的削皮和变形效应。 $ΔR_{\ rm ch} $与状态核方程以及ISB对这种关系的影响的连接是根据能量密度功能方法讨论的。我们发现,核ISB效应可能会将对称能斜率参数$ L $ $ L $的估计值转移超过10 meV,而库仑校正可以忽略。 {\ it Ab intibio}计算最近预测了ISB对镜核中基态能量和电荷半径的影响相对较小,这表明对提取有关核EOS信息的信息可忽略不计。这些对比的结果需要进行专门的理论努力来解决这个总体问题,不仅会影响中子皮肤厚度或镜像核的质量和电荷半径的差异,还影响其他可观察到的物品,例如同样类似的状态能量。
Isospin symmetry breaking (ISB) effects in the charge radius difference $ΔR_{\rm ch}$ of mirror nuclei are studied using the test example of ${}^{48}$Ca and ${}^{48}$Ni. This choice allows for a transparent study of ISB contributions since paring and deformation effects, commonly required for the study of mirror nuclei, can be neglected in this specific pair. The connection of $ΔR_{\rm ch}$ with the nuclear Equation of State and the effect of ISB on such a relation are discussed according to an Energy Density Functional approach. We find that nuclear ISB effects may shift the estimated value for the symmetry energy slope parameter $L$ by more than 10 MeV while Coulomb corrections can be neglected. ISB effects on the ground-state energy and charge radii in mirror nuclei have been recently predicted by {\it ab initio} calculations to be relatively small, pointing to a negligible effect for the extraction of information on the nuclear EoS. These contrasting results call for a dedicated theoretical effort to solve this overarching problem that impacts not only the neutron skin thickness or the difference in mass and charge radii of mirror nuclei but also other observables such as the Isobaric Analog State energy.