Temperature derivative divergence of the electric conductivity and thermal photon emission rate at the critical end point from holography

Fuente: arXiv
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Main Authors: Si, Yi-Ping, Li, Danning, Huang, Mei
Format: Preprint
Published: 2025
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author Si, Yi-Ping
Li, Danning
Huang, Mei
author_facet Si, Yi-Ping
Li, Danning
Huang, Mei
contents The thermal photon emission rate $\frac{dΓ}{dk}$ and DC eletric conductivity $σ_{Q}$ of the strongly coupled quark-gluon plasma (sQGP) are investigated around the critical end point in a $N_f=2+1$ holographic QCD model with parameters obtained from machine-learning. It is found that both thermal photon emission rate and eletric conductivity grow most obviously around $T_c$, which agrees with the previous studies, and the result of eletric conductivity at zero chemical potential resembles the lattice results. Moreover, it is found that both the temperature derivative of the eletric conductivity and thermal photon emission rate diverge at the critical end point.
format Preprint
id arxiv_https___arxiv_org_abs_2509_25636
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Temperature derivative divergence of the electric conductivity and thermal photon emission rate at the critical end point from holography
Si, Yi-Ping
Li, Danning
Huang, Mei
High Energy Physics - Phenomenology
The thermal photon emission rate $\frac{dΓ}{dk}$ and DC eletric conductivity $σ_{Q}$ of the strongly coupled quark-gluon plasma (sQGP) are investigated around the critical end point in a $N_f=2+1$ holographic QCD model with parameters obtained from machine-learning. It is found that both thermal photon emission rate and eletric conductivity grow most obviously around $T_c$, which agrees with the previous studies, and the result of eletric conductivity at zero chemical potential resembles the lattice results. Moreover, it is found that both the temperature derivative of the eletric conductivity and thermal photon emission rate diverge at the critical end point.
title Temperature derivative divergence of the electric conductivity and thermal photon emission rate at the critical end point from holography
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2509.25636