Proximity effect of pair correlation in the inner crust of neutron stars

Toshiyuki Okihashi, M. Matsuo
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引用次数: 2

Abstract

We study proximity effect of pair correlation in the inner crust of neutron stars by means of the Skyrme-Hartree-Fock-Bogoliubov theory formulated in the coordinate space. We describe a system composed of a nuclear cluster immersed in neutron superfluid, which is confined in a spherical box. Using a density-dependent effective pairing interaction which reproduces both the pair gap of neutron matter obtained in ab initio calculations and that of finite nuclei, we analyze how the pair condensate in neutron superfluid is affected by the presence of the nuclear cluster. It is found that the proximity effect is characterized by the coherence length of neutron superfluid measured from the edge position of the nuclear cluster. The calculation predicts that the proximity effect has a strong density dependence. In the middle layers of the inner crust with baryon density $5 \times 10^{-4}$ fm$^{-3} 5 \times 10^{-2}$ fm$^{-3}$.
中子星内壳中对相关的邻近效应
利用坐标空间中的Skyrme-Hartree-Fock-Bogoliubov理论,研究了中子星内壳中对相关的邻近效应。我们描述了一个由浸没在中子超流体中的核团组成的系统,该系统被限制在一个球形盒子中。利用密度相关的有效配对相互作用,再现了从头计算得到的中子物质的对间隙和有限原子核的对间隙,我们分析了核团的存在如何影响中子超流体中的对凝聚。从核团簇边缘位置测量的中子超流体相干长度表征了邻近效应。计算结果表明,邻近效应具有较强的密度依赖性。在内地壳的中间层,重子密度为$5 \乘以10^{-4}$ fm$^{-3}$ 5 \乘以10^{-2}$ fm$^{-3}$。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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