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

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Hauptverfasser: Shchechilin, Nikolai N., Chamel, Nicolas, Chugunov, Andrey I.
Format: Preprint
Veröffentlicht: 2025
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author Shchechilin, Nikolai N.
Chamel, Nicolas
Chugunov, Andrey I.
author_facet Shchechilin, Nikolai N.
Chamel, Nicolas
Chugunov, Andrey I.
contents 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 $u_\mathrm{sp}\approx0.13-0.15$. By applying a simplified stability criterion within the liquid-drop framework, we show that these values of $u_\mathrm{sp}$ 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.
format Preprint
id arxiv_https___arxiv_org_abs_2505_18309
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Filling fractions for the formation of nuclear pasta in neutron stars: semiclassical vs liquid-drop predictions
Shchechilin, Nikolai N.
Chamel, Nicolas
Chugunov, Andrey I.
High Energy Astrophysical Phenomena
Nuclear Theory
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 $u_\mathrm{sp}\approx0.13-0.15$. By applying a simplified stability criterion within the liquid-drop framework, we show that these values of $u_\mathrm{sp}$ 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.
title Filling fractions for the formation of nuclear pasta in neutron stars: semiclassical vs liquid-drop predictions
topic High Energy Astrophysical Phenomena
Nuclear Theory
url https://arxiv.org/abs/2505.18309