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Jet Quenching of the Heavy Quarks in the Quark-Gluon Plasma and the Nonadditive Statistics

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arxiv 2405.15679 v1 pith:LTZMED3K submitted 2024-05-24 hep-ph nucl-th

Jet Quenching of the Heavy Quarks in the Quark-Gluon Plasma and the Nonadditive Statistics

classification hep-ph nucl-th
keywords nonadditivequark-gluoncalculateheavy-quarksplasmaanomalousdiffusionenergy
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Using the Plastino-Plastino (PP) equation, we calculate transport coefficients of the heavy-quarks traversing inside the quark-gluon plasma, and generalize their relationship with differential energy loss. The PP equation indicates anomalous diffusion of the probe particles and yields a quasi-exponential stationary distribution obtained also from the nonadditive statistics proposed by C. Tsallis. We estimate energy loss in a nonadditive quark-gluon medium, and calculate the jet-quenching parameter ($\hat{q}$) for the PP dynamics. With the help of the estimate of $\hat{q}$, we calculate the nuclear suppression factor ($R_{\text{AA}}$) of the heavy-quarks passing through a nonadditive quark-gluon plasma using the model proposed by Dokshitzer and Kharzeev. In many a case, the parameters in the analysis are fixed from the experimental results to minimize arbitrariness. There is a good agreement between the theoretical calculation and experimental $R_{\text{AA}}$ data, indicating that fast heavy-quarks may be subjected to anomalous diffusion inside the QGP.

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