Pion properties in isospin-asymmetric nuclear matter using in-medium chiral perturbation theory

Fuente: arXiv
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Main Authors: Kwon, Kihong, Suda, Yamato, Hübsch, Stephan, Jido, Daisuke
Format: Preprint
Published: 2025
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author Kwon, Kihong
Suda, Yamato
Hübsch, Stephan
Jido, Daisuke
author_facet Kwon, Kihong
Suda, Yamato
Hübsch, Stephan
Jido, Daisuke
contents We compute the density dependence of in-medium pion properties, such as mass, wave function renormalization, and decay constant in the correlation function approach, and how they change under the influence of isospin-asymmetric nuclear matter. To this end, we use in-medium chiral perturbation theory to compute the relevant Feynman diagrams up to two-loop diagrams. Our results show that the isospin asymmetry of the nuclear matter splits these quantities into three separate values, corresponding to the three pions. Consequently, the tendency of each in-medium pion mass, wave function renormalization, and decay constant is dependent on the density and the neutron-to-proton ratio $ρ_n/ρ_p$ of nuclear matter. We also derive an in-medium Gell-Mann--Oakes--Renner relation which is valid for isospin-asymmetric nuclear matter and investigate to what extent it holds within our calculations.
format Preprint
id arxiv_https___arxiv_org_abs_2507_01398
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Pion properties in isospin-asymmetric nuclear matter using in-medium chiral perturbation theory
Kwon, Kihong
Suda, Yamato
Hübsch, Stephan
Jido, Daisuke
Nuclear Theory
High Energy Physics - Phenomenology
We compute the density dependence of in-medium pion properties, such as mass, wave function renormalization, and decay constant in the correlation function approach, and how they change under the influence of isospin-asymmetric nuclear matter. To this end, we use in-medium chiral perturbation theory to compute the relevant Feynman diagrams up to two-loop diagrams. Our results show that the isospin asymmetry of the nuclear matter splits these quantities into three separate values, corresponding to the three pions. Consequently, the tendency of each in-medium pion mass, wave function renormalization, and decay constant is dependent on the density and the neutron-to-proton ratio $ρ_n/ρ_p$ of nuclear matter. We also derive an in-medium Gell-Mann--Oakes--Renner relation which is valid for isospin-asymmetric nuclear matter and investigate to what extent it holds within our calculations.
title Pion properties in isospin-asymmetric nuclear matter using in-medium chiral perturbation theory
topic Nuclear Theory
High Energy Physics - Phenomenology
url https://arxiv.org/abs/2507.01398