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Jet quenching and medium response in high-energy heavy-ion collisions: a review
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Jet quenching has been used successfully as a hard probe to study properties of the quark-gluon plasma (QGP) in high-energy heavy-collisions at both the Relativistic Heavy-Ion Collider (RHIC) and the Large Hadron Collider (LHC). We will review recent progresses in theoretical and phenomenological studies of jet quenching with jet transport models. Special emphasis is given to effects of jet-induced medium response on a wide variety of experimental measurements and their implication on extracting transport properties of the QGP in heavy-ion collisions.
Forward citations
Cited by 19 Pith papers
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First measurement of jet suppression at forward rapidity in heavy-ion collisions shows strong centrality-dependent suppression of jet yields.
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An Equilibrating Parton Shower for Jet Quenching and Medium Response
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.
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Gluon radiation from a QCD antenna with realistic parton-medium interactions
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Momentum Broadening in the Opacity Expansion: All-Path-Length Corrections and Improved Regge Kinematics
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An improved linear Boltzmann transport model for hadron and jet suppression in ultrarelativistic heavy-ion collisions
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High-Dimensional Unfolding in Large Backgrounds
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The Gilbert Damping Factor of Heavy Quark Spin Polarization in the Magnetic Field
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Rapidity asymmetry of jet-hadron correlation as a robust signal of diffusion wake induced by di-jets in high-energy heavy-ion collisions
Predicts that the rapidity asymmetry of jet-hadron correlations in di-jets with a rapidity gap is a background-free observable for the jet-induced diffusion wake.
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Anisotropic jet broadening and jet shape
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Giving wake to energy-energy correlators: Hydrodynamic response on the celestial sphere
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Geometric Bias and Centrality Dependence of Jet Quenching in High-Energy Nuclear Collisions
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Modified Coherence and the Transverse Extent of Jets
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In the AMPT model, jet-induced medium excitation enhances the strange-to-non-strange hadron ratio around quenched jets in Pb+Pb collisions, increasing with centrality and radial distance.
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The quark-gluon plasma is best described as a strongly coupled liquid of massive, very short-lived quark and gluon quasiparticles, with sound (phonon) modes becoming the most well-defined collective excitation at low momenta.
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