论文标题

QMC能量密度功能中的张量和配对相互作用

Tensor and pairing interactions within the QMC energy density functional

论文作者

Martinez, Kay Marie L., Thomas, Anthony William, Guichon, Pierre A. M., Stone, Jirina R.

论文摘要

在QMC模型的最新版本中,QMC $π$ -III-T,将改进密度函数,以在旋转电流中包括张量组件二次和QMC框架中得出的配对相互作用。传统的配对强度根据QMC参数和优化模型的参数表示。用最终参数集计算了多种核观测值。张量分量的包含改善了地面体积特性的预测,而对单粒子光谱的影响很小。此外,发现其对选定核的变形的影响可改善球形上的双魔力核的能量。详细研究了沿ZR链沿ZR链的能量曲线的变化。新的配对函数还应用于中子壳体间隙的研究,在该研究中,它可以改善对超赫维区域的子壳闭合的预测。

In the latest version of the QMC model, QMC$π$-III-T, the density functional is improved to include the tensor component quadratic in the spin-current and a pairing interaction derived in the QMC framework. Traditional pairing strengths are expressed in terms of the QMC parameters and the parameters of the model optimised. A variety of nuclear observables are calculated with the final set of parameters. The inclusion of the tensor component improves the predictions for ground-state bulk properties, while it has a small effect on the single-particle spectra. Further, its effect on the deformation of selected nuclei is found to improve the energies of doubly-magic nuclei at sphericity. Changes in the energy curves along the Zr chain with increasing deformation are investigated in detail. The new pairing functional is also applied to the study of neutron shell gaps, where it leads to improved predictions for subshell closures in the superheavy region.

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