论文标题

镜子核的质子和中子皮以及对称能

Proton and neutron skins and symmetry energy of mirror nuclei

论文作者

Gaidarov, M. K., Moumene, I., Antonov, A. N., Kadrev, D. N., Sarriguren, P., de Guerra, E. Moya

论文摘要

核的中子皮肤是重要的基本特性,但其准确的测量面临许多挑战。受核力量电荷对称性的启发,富含中子核的中子皮肤与相应镜核的电荷半径之间的差异有关。我们在与Skyrme相互作用的Hartree-Fock-Bogoliubov方法的框架内研究了这种关系。在中间质量范围内,还对质子皮肤的几个镜对进行预测。对于核及其相应的镜面伙伴,同时研究了中子皮肤厚度与核对称能量的密度依赖性相关的特征之间的相关性。例如,考虑使用质量数$ a = 48-60 $的NI同位素链。这些数量是在相干密度波动模型中使用Brueckner和Skyrme能量密度函数进行的,用于同胞素不对称的核物质,具有两个Skyrme型有效相互作用SKM*和SLY4。还为对称能量提供了结果,该结果是$ a $ a $的函数,用于$ z = 20 $,$ n = 14 $和$ n = 50 $的nuclei链中的一组镜子对。进化曲线显示在每个链中的$ n = z $ nucleus处的类似行为,当$ n \ neq z $启动时,则表现出平稳的增长偏差。将半径和皮肤的结果与基于高精度手性力量计算的结果进行比较。

The neutron skin of nuclei is an important fundamental property, but its accurate measurement faces many challenges. Inspired by charge symmetry of nuclear forces, the neutron skin of a neutron-rich nucleus is related to the difference between the charge radii of the corresponding mirror nuclei. We investigate this relation within the framework of the Hartree-Fock-Bogoliubov method with Skyrme interactions. Predictions for proton skins are also made for several mirror pairs in the middle mass range. For the first time the correlation between the thickness of the neutron skin and the characteristics related with the density dependence of the nuclear symmetry energy is investigated simultaneously for nuclei and their corresponding mirror partners. As an example, the Ni isotopic chain with mass number $A=48-60$ is considered. These quantities are calculated within the coherent density fluctuation model using Brueckner and Skyrme energy-density functionals for isospin asymmetric nuclear matter with two Skyrme-type effective interactions, SkM* and SLy4. Results are also presented for the symmetry energy as a function of $A$ for a family of mirror pairs from selected chains of nuclei with $Z=20$, $N=14$, and $N=50$. The evolution curves show a similar behavior crossing at the $N=Z$ nucleus in each chain and a smooth growing deviation when $N\neq Z$ starts. Comparison of our results for the radii and skins with those from the calculations based on high-precision chiral forces is made.

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