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Beta-Function Dependence on Running Coupling in Holographic QCD Models

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arxiv 2407.14448 v1 pith:3RXNIFLA submitted 2024-07-19 hep-th hep-ph

classification hep-thhep-ph
keywords couplingfunctionrunningbetaholographicbeta-functionboundarydependence
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

We study the dependence of beta-function on running coupling constant in holographic models supported by Einstein-dilaton-Maxwell action for light and heavy quarks. Although, in the previous paper [arXiv:2402.14512], we considered different types of the dilaton boundary conditions, but since the behavior of $\beta$-function as a function of running coupling does not depend significantly on the boundary condition, we chose one. The corresponding $\beta$-functions are negative and monotonically decreasing functions, and have jumps on the 1-st order phase transitions for both light and heavy quarks. In addition, we compare our holographic results for $\beta$-function as a function of running coupling with perturbation results that obtained within 2-loop calculations.

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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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