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Heavy quark radiation in an anisotropic hot QCD medium

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arxiv 2306.07966 v2 pith:7IZRI3PX submitted 2023-06-13 hep-ph nucl-th

Heavy quark radiation in an anisotropic hot QCD medium

classification hep-ph nucl-th
keywords anisotropybeencoefficientsconsideringmediummomentumanisotropiccollisional
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The impact of momentum anisotropy on the heavy quarks (HQs) dynamics has been investigated in a hot QCD medium while considering both collisional and radiative processes within the ambit of the Fokker-Planck approach. The relative orientation of the HQs motion (momentum vector) with respect to the direction of anisotropy is responsible for the character of transport coefficients. Therefore, the drag and diffusion coefficients of the HQs are decomposed, respectively, into two and four components by considering a general tensor basis. Each component of the drag and diffusion coefficient of the HQs has been analyzed in detail. It is observed that the anisotropy has a significant impact on the transport coefficients of the HQ for both the collisional and the radiational processes. The nuclear suppression factor, $R_{AA}$, has been computed considering the anisotropic medium. It is observed that the momentum anisotropy affects the $R_{AA}$ of the HQs significantly in both elastic and inelastic cases.

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    Time-correlated thermal noise modeled with a fractional derivative substantially alters heavy quark momentum correlations, displacement, and transverse-momentum moments in hot QCD matter.