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Main Authors: Plessis, Jean F. Du, Pablos, Daniel, Rajagopal, Krishna
Format: Preprint
Published: 2025
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Online Access:https://arxiv.org/abs/2505.00863
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author Plessis, Jean F. Du
Pablos, Daniel
Rajagopal, Krishna
author_facet Plessis, Jean F. Du
Pablos, Daniel
Rajagopal, Krishna
contents To date, holographic calculations in strongly coupled plasma have provided separate descriptions for the rates of energy loss either for ultrarelativistic massless quarks and gluons or for infinitely massive quarks, with the latter calculation valid for $\sqrtγ < M/(\sqrtλT)$, where $γ$ is the Lorentz boost factor for a heavy quark with velocity $v$ and mass $M$ moving through plasma with 't Hooft coupling $λ$ and temperature $T$. These two calculations should apply sequentially in the description of the energy loss of a heavy quark that starts out ultrarelativistic, loses energy, slows down, becomes non-relativistic at later times, and ultimately comes to rest and diffuses in the strongly coupled plasma. We provide an ansatz for uniquely incorporating both regimes to give an approximate but unified description of how a heavy quark that is initially ultrarelativistic loses energy all the way until it comes to rest. We implement this ansatz in the Hybrid Strong/Weak Coupling Model. With this new, consistent, treatment of heavy quark energy loss at strong coupling, we confront our predictions for the suppression and azimuthal anisotropies of D- and B-mesons, as well as B-tagged jets, with available experimental data.
format Preprint
id arxiv_https___arxiv_org_abs_2505_00863
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Holographic Heavy Quark Energy Loss in the Hybrid Model
Plessis, Jean F. Du
Pablos, Daniel
Rajagopal, Krishna
High Energy Physics - Phenomenology
Nuclear Theory
To date, holographic calculations in strongly coupled plasma have provided separate descriptions for the rates of energy loss either for ultrarelativistic massless quarks and gluons or for infinitely massive quarks, with the latter calculation valid for $\sqrtγ < M/(\sqrtλT)$, where $γ$ is the Lorentz boost factor for a heavy quark with velocity $v$ and mass $M$ moving through plasma with 't Hooft coupling $λ$ and temperature $T$. These two calculations should apply sequentially in the description of the energy loss of a heavy quark that starts out ultrarelativistic, loses energy, slows down, becomes non-relativistic at later times, and ultimately comes to rest and diffuses in the strongly coupled plasma. We provide an ansatz for uniquely incorporating both regimes to give an approximate but unified description of how a heavy quark that is initially ultrarelativistic loses energy all the way until it comes to rest. We implement this ansatz in the Hybrid Strong/Weak Coupling Model. With this new, consistent, treatment of heavy quark energy loss at strong coupling, we confront our predictions for the suppression and azimuthal anisotropies of D- and B-mesons, as well as B-tagged jets, with available experimental data.
title Holographic Heavy Quark Energy Loss in the Hybrid Model
topic High Energy Physics - Phenomenology
Nuclear Theory
url https://arxiv.org/abs/2505.00863