论文标题
基于相对论密度依赖性点耦合模型的核电交换激发
Nuclear charge-exchange excitations based on relativistic density-dependent point-coupling model
论文作者
论文摘要
核中远离稳定山谷的自旋呈旋转过渡对于描述天体相关的弱相互作用过程至关重要。尽管它们主要是超出实验范围的,但理论建模提供了对其性质的重要见解。为了描述旋转式响应,使用相对论密度依赖性点耦合相互作用和可分离的配对相互作用在$ t = 1 $ t = 1 $ t = 0 $ t = 0 $配对的通道中,使用相对论密度依赖性点耦合相互作用来制定质子中的相对论准粒子随机相位近似(PN-RQRPA)。通过实施最近建立的DD-PCX相互作用与与中子到蛋白质数不对称的核相关的改进的同位素特性相关,已经研究了同位类模拟共振(IAR)和Gamow-Teller共振(GTR)。与通常低估SN同位素链中IAR激发能的其他模型相反,本模型准确地再现了实验数据,而GTR性能取决于等构配对相互作用强度。该框架不仅提供了对核中自旋 - 异种反应的改进描述,而且还允许将来对恒星环境中电荷交换激发和弱相互作用过程进行大规模计算。
Spin-isospin transitions in nuclei away from the valley of stability are essential for the description of astrophysically relevant weak interaction processes. While they remain mainly beyond the reach of experiment, theoretical modeling provides important insight into their properties. In order to describe the spin-isospin response,vcthe proton-neutron relativistic quasiparticle random phase approximation (PN-RQRPA) is formulated using the relativistic density-dependent point coupling interaction, and separable pairing interaction in both the $T=1$ and $T=0$ pairing channels. By implementing recently established DD-PCX interaction with improved isovector properties relevant for the description of nuclei with neutron-to-proton number asymmetry, the isobaric analog resonances (IAR) and Gamow-Teller resonances (GTR) have been investigated. In contrast to other models that usually underestimate the IAR excitation energies in Sn isotope chain, the present model accurately reproduces the experimental data, while the GTR properties depend on the isoscalar pairing interaction strength. This framework provides not only an improved description of the spin-isospin response in nuclei, but it also allows future large scale calculations of charge-exchange excitations and weak interaction processes in stellar environment.