Dense Matter and Compact Stars in Strong Magnetic Fields

Fuente: arXiv
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Main Authors: Sinha, Monika, Thapa, Vivek Baruah
Format: Preprint
Published: 2026
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author Sinha, Monika
Thapa, Vivek Baruah
author_facet Sinha, Monika
Thapa, Vivek Baruah
contents Compact stars serve as natural systems where matter exists at densities far beyond those achievable in laboratory experiments. Among them, magnetars are expected to possess interior magnetic fields that may reach values of the order of $10^{17}-10^{18}$ G. These extreme conditions are expected to alter the microscopic and macroscopic properties of dense matter. In this review, we examine how strong magnetic fields affect fermionic matter through mechanisms such as Landau quantization and anomalous magnetic moment interactions. We further discuss the behaviour of magnetized hadronic matter within relativistic mean-field approaches and consider the possible emergence of additional degrees of freedom, including hyperons, $Δ$ resonances, meson condensates and quark matter. The consequences of these effects for neutron-star structure and observational constraints are also briefly outlined.
format Preprint
id arxiv_https___arxiv_org_abs_2604_22680
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Dense Matter and Compact Stars in Strong Magnetic Fields
Sinha, Monika
Thapa, Vivek Baruah
High Energy Astrophysical Phenomena
High Energy Physics - Phenomenology
Nuclear Theory
Compact stars serve as natural systems where matter exists at densities far beyond those achievable in laboratory experiments. Among them, magnetars are expected to possess interior magnetic fields that may reach values of the order of $10^{17}-10^{18}$ G. These extreme conditions are expected to alter the microscopic and macroscopic properties of dense matter. In this review, we examine how strong magnetic fields affect fermionic matter through mechanisms such as Landau quantization and anomalous magnetic moment interactions. We further discuss the behaviour of magnetized hadronic matter within relativistic mean-field approaches and consider the possible emergence of additional degrees of freedom, including hyperons, $Δ$ resonances, meson condensates and quark matter. The consequences of these effects for neutron-star structure and observational constraints are also briefly outlined.
title Dense Matter and Compact Stars in Strong Magnetic Fields
topic High Energy Astrophysical Phenomena
High Energy Physics - Phenomenology
Nuclear Theory
url https://arxiv.org/abs/2604.22680