Holographic QCD Running Coupling for Light Quarks in Strong Magnetic Field

Fuente: arXiv
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Main Authors: Aref'eva, Irina Ya., Hajilou, Ali, Nikolaev, Alexander, Slepov, Pavel
Format: Preprint
Published: 2024
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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 consider running coupling constant in holographic model with external magnetic field supported by Einstein-dilaton-three-Maxwell action. We obtain a significant dependence of the running coupling constant $α$ on chemical potential, temperature and magnetic field. We use the boundary condition that ensures the agreement with lattice calculations of string tension between quarks at zero chemical potential. The location of the 1st order phase transitions in $(μ, T)$-plane does not depend on the dilaton boundary conditions. We observe that running coupling $α$ decreases with increasing magnetic field for the fixed values of chemical potential and temperature. At the 1st order phase transitions the functions $α$ undergo jumps depending on temperature, chemical potential and magnetic field.
format Preprint
id arxiv_https___arxiv_org_abs_2407_11924
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Holographic QCD Running Coupling for Light Quarks in Strong Magnetic Field
Aref'eva, Irina Ya.
Hajilou, Ali
Nikolaev, Alexander
Slepov, Pavel
High Energy Physics - Theory
High Energy Physics - Phenomenology
We consider running coupling constant in holographic model with external magnetic field supported by Einstein-dilaton-three-Maxwell action. We obtain a significant dependence of the running coupling constant $α$ on chemical potential, temperature and magnetic field. We use the boundary condition that ensures the agreement with lattice calculations of string tension between quarks at zero chemical potential. The location of the 1st order phase transitions in $(μ, T)$-plane does not depend on the dilaton boundary conditions. We observe that running coupling $α$ decreases with increasing magnetic field for the fixed values of chemical potential and temperature. At the 1st order phase transitions the functions $α$ undergo jumps depending on temperature, chemical potential and magnetic field.
title Holographic QCD Running Coupling for Light Quarks in Strong Magnetic Field
topic High Energy Physics - Theory
High Energy Physics - Phenomenology
url https://arxiv.org/abs/2407.11924