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Magnetic Catalysis for Heavy Quarks in Anisotropic Holographic Model

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arxiv 2410.16815 v2 pith:QB7TVE62 submitted 2024-10-22 hep-th

classification hep-th
keywords heavyquarksmodelmagneticfieldholographicanisotropiccatalysis
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We consider a twice anisotropic five-dimensional holographic model supported by Einstein-dilaton-three-Maxwell action that was constructed in the paper [arXiv:2011.07023]. Although, that model reproduced some essential features of the ``heavy quarks'', but did not describe the magnetic catalysis (MC) phenomenon expected from lattice results for the Quark-Gluon Plasma (QGP) with heavy quarks. We study MC phenomenon as well as typical properties of the heavy quarks phase diagram contains magnetic field as a new parameter by improving the holographic model, i.e. modifying the ``heavy quarks'' warp factor and the coupling function for the Maxwell field. Considering spatial anisotropy decreases the transition temperature for all values of the magnetic field for heavy quarks model.

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  1. Phase Diagram Magnetic Features of Holographic Anisotropic Model for $z^4$-term Heavy Quarks

    hep-th 2025-05 conditional novelty 4.0 of 10

    The z^4 anisotropic holographic heavy-quark model exhibits direct magnetic catalysis in both its first-order phase transition and its temporal-Wilson-loop crossover, and the string tension weakens sharply with magnetic field.

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