Quarkonium in a QCD medium with momentum-dependent relaxation time

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Main Authors: Singh, Sunny Kumar, Bhadury, Samapan, Ghosh, Ritesh, Kurian, Manu
Format: Preprint
Published: 2025
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author Singh, Sunny Kumar
Bhadury, Samapan
Ghosh, Ritesh
Kurian, Manu
author_facet Singh, Sunny Kumar
Bhadury, Samapan
Ghosh, Ritesh
Kurian, Manu
contents In this study, we explore the properties of quarkonia in a hot QCD medium using a newly proposed collision kernel that consistently incorporates the particle's momentum dependence into the relaxation time scale of the medium. The longitudinal component of the gluon self-energy, along with the Debye screening mass, is computed within the one-loop hard thermal loop framework by incorporating non-equilibrium corrections. A modified kinetic theory with an extended relaxation time approximation is employed to model the non-equilibrium dynamics of the QCD medium. The sensitivity of the heavy quarkonia potential to the momentum dependence of the relaxation time is studied. Further, we studied the binding energy and thermal width of quarkonia states within this new kinetic theory. Sizable variations in the temperature behavior of these quantities are observed in comparison with the standard relaxation time approximation method due to the particle momentum dependence on the relaxation timescale of the QCD medium. Our findings highlight that accounting for the microscopic nature of the collision timescale is crucial for understanding the quarkonium behavior in a QCD medium.
format Preprint
id arxiv_https___arxiv_org_abs_2508_09108
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Quarkonium in a QCD medium with momentum-dependent relaxation time
Singh, Sunny Kumar
Bhadury, Samapan
Ghosh, Ritesh
Kurian, Manu
High Energy Physics - Phenomenology
High Energy Physics - Theory
Nuclear Theory
In this study, we explore the properties of quarkonia in a hot QCD medium using a newly proposed collision kernel that consistently incorporates the particle's momentum dependence into the relaxation time scale of the medium. The longitudinal component of the gluon self-energy, along with the Debye screening mass, is computed within the one-loop hard thermal loop framework by incorporating non-equilibrium corrections. A modified kinetic theory with an extended relaxation time approximation is employed to model the non-equilibrium dynamics of the QCD medium. The sensitivity of the heavy quarkonia potential to the momentum dependence of the relaxation time is studied. Further, we studied the binding energy and thermal width of quarkonia states within this new kinetic theory. Sizable variations in the temperature behavior of these quantities are observed in comparison with the standard relaxation time approximation method due to the particle momentum dependence on the relaxation timescale of the QCD medium. Our findings highlight that accounting for the microscopic nature of the collision timescale is crucial for understanding the quarkonium behavior in a QCD medium.
title Quarkonium in a QCD medium with momentum-dependent relaxation time
topic High Energy Physics - Phenomenology
High Energy Physics - Theory
Nuclear Theory
url https://arxiv.org/abs/2508.09108