Jet quenching parameter of quark-gluon plasma in strong magnetic field: Perturbative QCD and AdS/CFT correspondence
Shiyong Li, Kiminad A. Mamo, Ho-Ung Yee

TL;DR
This paper calculates the jet quenching parameter $$ of quark-gluon plasma in strong magnetic fields using perturbative QCD and AdS/CFT, revealing universal dependencies and potential azimuthal asymmetries.
Contribution
It provides the first comprehensive calculation of $$ in both weakly and strongly coupled regimes with strong magnetic fields, considering jet orientations.
Findings
In weak coupling, $$ depends on magnetic field, temperature, and coupling with specific logarithmic factors.
In strong coupling, $$ scales with $\u221a{\u03bb}$ and magnetic field, showing universal behavior.
Transverse momentum diffusion asymmetry may lead to azimuthal asymmetries in gluon radiation.
Abstract
We compute the jet quenching parameter of QCD plasma in the presence of strong magnetic field in both weakly and strongly coupled regimes. In weakly coupled regime, we compute in perturbative QCD at complete leading order (that is, leading log as well as the constant under the log) in QCD coupling constant , assuming the hierarchy of scales . We consider two cases of jet orientations with respect to the magnetic field: 1) the case of jet moving parallel to the magnetic field, 2) the case jet moving perpendicular to the magnetic field. In the former case, we find , while in the latter we have . In both cases, this leading order result arises from the scatterings with thermally populated lowest Landau level quarks. In strongly coupled regime…
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