Filling fractions for the formation of nuclear pasta in neutron stars: semiclassical vs liquid-drop predictions

IF 2.8 3区 物理与天体物理 Q2 PHYSICS, NUCLEAR
Nikolai N. Shchechilin, Nicolas Chamel, Andrey I. Chugunov
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Abstract

Historically, a sequence of nuclear pasta shapes was predicted to appear in the deepest region of the inner crust of a neutron star within the compressible liquid-drop picture, when the filling fraction u exceeds some threshold values. However, later calculations showed that these values depend on the details of the liquid-drop model. Here we investigate the existence of pasta in neutron stars within the semiclassical extended Thomas-Fermi approach using various generalized Skyrme functionals. The filling fractions for the different transitions are found to be quasi-universal, unlike the pasta density ranges governed by the symmetry energy at relevant densities. In particular, pasta emerge at \(u_\textrm{sp}\approx 0.13\,-\, 0.15\). By applying a simplified stability criterion within the liquid-drop framework, we show that these values of \(u_\textrm{sp}\) can be explained by the nuclear curvature correction. In this way, the abundance of pasta can be easily estimated. This criterion can also be used to optimize the search of pasta within the more realistic extended Thomas-Fermi approach.

中子星核面食形成的填充分数:半经典vs液滴预测
从历史上看,当填充分数u超过某些阈值时,预测在可压缩液滴图像中中子星内壳最深区域会出现一系列核面食形状。然而,后来的计算表明,这些值取决于液滴模型的细节。本文利用各种广义Skyrme泛函,在半经典扩展Thomas-Fermi方法中研究了中子星中面食的存在性。不同跃迁的填充分数被发现是准普适的,不像面食密度范围由相关密度的对称能控制。特别是面食出现在\(u_\textrm{sp}\approx 0.13\,-\, 0.15\)。通过在液滴框架内应用简化的稳定性判据,我们表明\(u_\textrm{sp}\)的这些值可以用核曲率修正来解释。这样,意大利面的丰富程度就可以很容易地估计出来。这一准则也可用于在更现实的扩展托马斯-费米方法中优化面食的搜索。
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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来源期刊
The European Physical Journal A
The European Physical Journal A 物理-物理:核物理
CiteScore
5.00
自引率
18.50%
发文量
216
审稿时长
3-8 weeks
期刊介绍: Hadron Physics Hadron Structure Hadron Spectroscopy Hadronic and Electroweak Interactions of Hadrons Nonperturbative Approaches to QCD Phenomenological Approaches to Hadron Physics Nuclear and Quark Matter Heavy-Ion Collisions Phase Diagram of the Strong Interaction Hard Probes Quark-Gluon Plasma and Hadronic Matter Relativistic Transport and Hydrodynamics Compact Stars Nuclear Physics Nuclear Structure and Reactions Few-Body Systems Radioactive Beams Electroweak Interactions Nuclear Astrophysics Article Categories Letters (Open Access) Regular Articles New Tools and Techniques Reviews.
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