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Updated analysis of jet quenching at RHIC and LHC within the light cone path integral approach

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arxiv 2007.09772 v2 pith:AHJT3EHU submitted 2020-07-19 hep-ph nucl-th

Updated analysis of jet quenching at RHIC and LHC within the light cone path integral approach

classification hep-ph nucl-th
keywords alpharhicdataanalysisapproachcalculationscollisionsintegral
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

We present results of a detailed analysis of experimental data on the nuclear modification factor $R_{AA}$ and the flow coefficient $v_2$ for light hadrons from RHIC for $0.2$ TeV Au+Au collisions and from LHC for $2.76$ and $5.02$ TeV Pb+Pb, and $5.44$ TeV Xe+Xe collisions. We perform calculations within the light-cone path integral approach to induced gluon emission. We use running $\alpha_s$ which is frozen at low momenta at some value $\alpha_{s}^{fr}$. We find that the RHIC data support somewhat larger value of $\alpha_{s}^{fr}$. For the $\chi^2$ optimized values of $\alpha_{s}^{fr}$, the theoretical predictions are in reasonable agreement with data on $R_{AA}$ and $v_2$. Calculations made for different formation times and life-times of the QGP show that jet quenching at the RHIC and LHC energies is only weakly sensitive to the initial and final stages of the QCD matter evolution.

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Cited by 2 Pith papers

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  1. An Equilibrating Parton Shower for Jet Quenching and Medium Response

    hep-ph 2026-07 conditional novelty 6.0

    A parton shower derived from QCD effective kinetic theory reproduces the full linearized Boltzmann equation and generates jet wakes, Mach-cone-like structures, and two-particle correlations.

  2. Predictions for $R_{AA}$ in 5.36 TeV C+C, O+O, and Ne+Ne collisions at the LHC

    hep-ph 2025-09 conditional novelty 5.0

    LHC light-ion R_AA measurements could discriminate between scenarios with and without mini-QGP formation in pp collisions, with the largest difference predicted for carbon.