Holographic QCD Running Coupling for Heavy Quarks in Strong Magnetic Field

Fuente: arXiv
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Auteurs principaux: Aref'eva, Irina Ya., Hajilou, Ali, Nikolaev, Alexander, Slepov, Pavel
Format: Preprint
Publié: 2025
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author Aref'eva, Irina Ya.
Hajilou, Ali
Nikolaev, Alexander
Slepov, Pavel
author_facet Aref'eva, Irina Ya.
Hajilou, Ali
Nikolaev, Alexander
Slepov, Pavel
contents We investigate the influence of a magnetic field on the running coupling constant for a heavy-quark model in a bottom-up holographic approach. To achieve this, we employ a magnetized Einstein-Maxwell-dilaton background that captures the essential features of heavy quark dynamics. Similar to the light-quark model, the running coupling $α$ for heavy quarks decreases in the presence of a strong external magnetic field at fixed temperature and chemical potential. The key distinction between the light and heavy quark models lies in the locations of their respective phase transitions. However, near the 1st order phase transitions, the behavior of $α$ is analogous for both cases: $α$ exhibits jumps that depend on temperature, chemical potential, and magnetic field strength.
format Preprint
id arxiv_https___arxiv_org_abs_2503_07521
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Holographic QCD Running Coupling for Heavy Quarks in Strong Magnetic Field
Aref'eva, Irina Ya.
Hajilou, Ali
Nikolaev, Alexander
Slepov, Pavel
High Energy Physics - Theory
High Energy Physics - Phenomenology
We investigate the influence of a magnetic field on the running coupling constant for a heavy-quark model in a bottom-up holographic approach. To achieve this, we employ a magnetized Einstein-Maxwell-dilaton background that captures the essential features of heavy quark dynamics. Similar to the light-quark model, the running coupling $α$ for heavy quarks decreases in the presence of a strong external magnetic field at fixed temperature and chemical potential. The key distinction between the light and heavy quark models lies in the locations of their respective phase transitions. However, near the 1st order phase transitions, the behavior of $α$ is analogous for both cases: $α$ exhibits jumps that depend on temperature, chemical potential, and magnetic field strength.
title Holographic QCD Running Coupling for Heavy Quarks in Strong Magnetic Field
topic High Energy Physics - Theory
High Energy Physics - Phenomenology
url https://arxiv.org/abs/2503.07521