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Main Authors: Modak, Ashes, Shaikh, Anowar, Kurian, Manu, Panda, Binata, Dash, Sadhana
Format: Preprint
Published: 2026
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Online Access:https://arxiv.org/abs/2604.27800
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author Modak, Ashes
Shaikh, Anowar
Kurian, Manu
Panda, Binata
Dash, Sadhana
author_facet Modak, Ashes
Shaikh, Anowar
Kurian, Manu
Panda, Binata
Dash, Sadhana
contents We investigate the charge transport properties of a relativistic drifting plasma using the kinetic theory within the relaxation time approximation. The collective drift induced by electromagnetic fields is described in terms of a suitably modified distribution function. The analysis is done for both constant and time dependent field configurations. For constant electromagnetic fields, we obtain the Hall drift current that arises from the transverse motion of charged particles in electric and magnetic fields. Extending the framework to time dependent electric fields, we show that their temporal variations give rise to polarization drift, which significantly alters the structure of the induced current and introduces additional components along both the conventional drift and polarization directions. We present a quantitative estimate of the Hall drift and polarization induced contributions in the quark gluon plasma and study the temperature dependence of the associated charge transport coefficients in the QCD.
format Preprint
id arxiv_https___arxiv_org_abs_2604_27800
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Electromagnetic response of a relativistic drifting plasma
Modak, Ashes
Shaikh, Anowar
Kurian, Manu
Panda, Binata
Dash, Sadhana
High Energy Physics - Phenomenology
We investigate the charge transport properties of a relativistic drifting plasma using the kinetic theory within the relaxation time approximation. The collective drift induced by electromagnetic fields is described in terms of a suitably modified distribution function. The analysis is done for both constant and time dependent field configurations. For constant electromagnetic fields, we obtain the Hall drift current that arises from the transverse motion of charged particles in electric and magnetic fields. Extending the framework to time dependent electric fields, we show that their temporal variations give rise to polarization drift, which significantly alters the structure of the induced current and introduces additional components along both the conventional drift and polarization directions. We present a quantitative estimate of the Hall drift and polarization induced contributions in the quark gluon plasma and study the temperature dependence of the associated charge transport coefficients in the QCD.
title Electromagnetic response of a relativistic drifting plasma
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2604.27800