Pi in the Sky: Neutron Stars with Exceptionally Light QCD Axions

Fuente: arXiv
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Main Authors: Kumamoto, Mia, Huang, Junwu, Drischler, Christian, Baryakhtar, Masha, Reddy, Sanjay
Format: Preprint
Published: 2024
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author Kumamoto, Mia
Huang, Junwu
Drischler, Christian
Baryakhtar, Masha
Reddy, Sanjay
author_facet Kumamoto, Mia
Huang, Junwu
Drischler, Christian
Baryakhtar, Masha
Reddy, Sanjay
contents We present a comprehensive study of axion condensed neutron stars that arise in models of an exceptionally light axion that couples to quantum chromodynamics (QCD). These axions solve the strong-charge-parity (CP) problem, but have a mass-squared lighter than that due to QCD by a factor of $\varepsilon<1$. Inside dense matter, the axion potential is altered, and much of the matter in neutron stars resides in the axion condensed phase where the strong-CP parameter $θ=π$ and CP remains a good symmetry. In these regions, masses and interactions of nuclei are modified, in turn changing the equation of state (EOS), structure and phenomenology of the neutron stars. We take first steps toward the study of the EOS of neutron star matter at $θ=π$ within chiral effective field theory and use relativistic mean field theory to deduce the resulting changes to nuclear matter and the neutron star low-density EOS. We derive constraints on the exceptionally light axion parameter space based on observations of the thermal relaxation of accreting neutron stars, isolated neutron star cooling, and pulsar glitches, excluding the region up to $5 \times 10^{-7} \lesssim \varepsilon \lesssim 0.2$ for $ m_a \gtrsim 2\times 10^{-9}\,{\rm eV} $. We comment on potential changes to the neutron star mass-radius relationship, and discuss the possibility of novel, nuclear-density compact objects with $θ=π$ that are stabilized not by gravity but by the axion potential.
format Preprint
id arxiv_https___arxiv_org_abs_2410_21590
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Pi in the Sky: Neutron Stars with Exceptionally Light QCD Axions
Kumamoto, Mia
Huang, Junwu
Drischler, Christian
Baryakhtar, Masha
Reddy, Sanjay
High Energy Physics - Phenomenology
High Energy Astrophysical Phenomena
Nuclear Theory
We present a comprehensive study of axion condensed neutron stars that arise in models of an exceptionally light axion that couples to quantum chromodynamics (QCD). These axions solve the strong-charge-parity (CP) problem, but have a mass-squared lighter than that due to QCD by a factor of $\varepsilon<1$. Inside dense matter, the axion potential is altered, and much of the matter in neutron stars resides in the axion condensed phase where the strong-CP parameter $θ=π$ and CP remains a good symmetry. In these regions, masses and interactions of nuclei are modified, in turn changing the equation of state (EOS), structure and phenomenology of the neutron stars. We take first steps toward the study of the EOS of neutron star matter at $θ=π$ within chiral effective field theory and use relativistic mean field theory to deduce the resulting changes to nuclear matter and the neutron star low-density EOS. We derive constraints on the exceptionally light axion parameter space based on observations of the thermal relaxation of accreting neutron stars, isolated neutron star cooling, and pulsar glitches, excluding the region up to $5 \times 10^{-7} \lesssim \varepsilon \lesssim 0.2$ for $ m_a \gtrsim 2\times 10^{-9}\,{\rm eV} $. We comment on potential changes to the neutron star mass-radius relationship, and discuss the possibility of novel, nuclear-density compact objects with $θ=π$ that are stabilized not by gravity but by the axion potential.
title Pi in the Sky: Neutron Stars with Exceptionally Light QCD Axions
topic High Energy Physics - Phenomenology
High Energy Astrophysical Phenomena
Nuclear Theory
url https://arxiv.org/abs/2410.21590