Transport properties of baryon rich back-reacted thermal plasma with finite 't Hooft coupling correction

Fuente: arXiv
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Main Authors: Pokhrel, Rishi, Sherpa, Karma P., Chettri, Indra K. P., Dey, Tanay K.
Format: Preprint
Published: 2026
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author Pokhrel, Rishi
Sherpa, Karma P.
Chettri, Indra K. P.
Dey, Tanay K.
author_facet Pokhrel, Rishi
Sherpa, Karma P.
Chettri, Indra K. P.
Dey, Tanay K.
contents In this work, holographic approach has been used to analyse the transport properties of baryon rich back-reacted thermal plasma with finite 't Hooft coupling correction. The dual bulk geometry is charged AdS black hole with higher derivative Gauss-Bonnet (GB) correction and string cloud. Specially, we have studied the nature of drag force, jet quenching parameter, screening length, radial profile and energy loss with respect to different parameters. The drag force and jet quenching parameter are enhanced with GB coupling, baryon and flavor density whereas the screening length reduces with these parameters. The radial profile and energy loss of the rotating quark has also been studied and it is observed that the radial profile decreases with increase in baryon potential and flavor density, temperature and angular frequency, whereas it is enhanced with conjugate momenta and GB coupling. Further, the energy loss of the quark grows with potential and flavor density, velocity and angular frequency and it is suppressed with GB coupling.
format Preprint
id arxiv_https___arxiv_org_abs_2603_08250
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Transport properties of baryon rich back-reacted thermal plasma with finite 't Hooft coupling correction
Pokhrel, Rishi
Sherpa, Karma P.
Chettri, Indra K. P.
Dey, Tanay K.
High Energy Physics - Theory
In this work, holographic approach has been used to analyse the transport properties of baryon rich back-reacted thermal plasma with finite 't Hooft coupling correction. The dual bulk geometry is charged AdS black hole with higher derivative Gauss-Bonnet (GB) correction and string cloud. Specially, we have studied the nature of drag force, jet quenching parameter, screening length, radial profile and energy loss with respect to different parameters. The drag force and jet quenching parameter are enhanced with GB coupling, baryon and flavor density whereas the screening length reduces with these parameters. The radial profile and energy loss of the rotating quark has also been studied and it is observed that the radial profile decreases with increase in baryon potential and flavor density, temperature and angular frequency, whereas it is enhanced with conjugate momenta and GB coupling. Further, the energy loss of the quark grows with potential and flavor density, velocity and angular frequency and it is suppressed with GB coupling.
title Transport properties of baryon rich back-reacted thermal plasma with finite 't Hooft coupling correction
topic High Energy Physics - Theory
url https://arxiv.org/abs/2603.08250