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Chiral Phase Transition and Meson Melting from AdS/QCD

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arxiv 1607.05751 v2 pith:5KOESEGG submitted 2016-07-19 hep-ph

classification hep-ph
keywords chiralpotentialtransitionchemicalmasstemperaturebaryonmeson
verification ladder T0 review T1 audit T2 compute T3 formal
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We investigate the in-medium behavior of mesons at finite temperature and baryon chemical potential within a soft-wall model of AdS/QCD. We use a quartic scalar potential to obtain the correct form of chiral symmetry breaking. At zero quark mass the chiral phase transition is second-order, becoming a crossover at physical quark mass. At zero baryon chemical potential, we find a chiral transition temperature of 155 MeV in the chiral limit and a pseudo-transition temperature of 151 MeV at physical quark mass, consistent with lattice results. In the low-temperature limit, the second-order transition occurs at a baryon chemical potential of 566 MeV while the rapid crossover occurs at 559 MeV. A new parameterization of the dilaton profile results in improved meson spectra. Meson melting occurs at a lower temperature and chemical potential than the chiral phase transition, so the vector-axial vector mass splitting remains constant until the bound states melt.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Effects of Born-Infeld Electrodynamics on Chiral Symmetry Restoration and Meson Susceptibilities in Holographic QCD

    hep-ph 2026-08 conditional novelty 5.0 of 10

    In a soft-wall holographic QCD model on a Born-Infeld black hole, stronger bulk nonlinearity shifts the chiral phase boundary to higher temperatures without changing the transition order.

  2. Probing the chiral and $U(1)$ axial symmetry restoration via meson susceptibilities in holographic QCD

    hep-ph 2026-03 conditional novelty 5.0 of 10

    In a soft-wall holographic QCD model, chiral symmetry restores at ~155 MeV while the U(1) axial symmetry restores near 190 MeV — a separation the authors present despite an admitted mismatch with lattice QCD below 175 MeV.

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