Jet broadening in dense inhomogeneous matter
arXiv:2202.08847 · doi:10.1103/PhysRevD.105.114010
Abstract
In this work, we study the jet momentum broadening in an inhomogeneous dense QCD medium. The transverse profile of this nuclear matter is described within a gradient expansion, and we focus on the leading gradient contributions. The leading parton is allowed to interact multiple times with the background through the soft gluon exchanges. We derive the associated final particle distribution using both the GLV opacity series and the BDMPS-Z formalism. We further discuss the modified factorization of the initial and final state effects and its consequences for phenomenological applications in the context of heavy-ion collisions and deep inelastic scattering. Finally, we present the broadening probability (describing the final state effects) in several limiting regimes, and give its numerical estimates for phenomenologically motivated sets of parameters.
42 pages, 4 figures, published version
References in corpus (21)
- Jet physics in heavy-ion collisions
- Longitudinal Broadening of Quenched Jets in Turbulent Color Fields
- A complete set of in-medium splitting functions to any order in opacity
- How does transverse (hydrodynamic) flow affect jet-broadening and jet-quenching ?
- Medium-induced gluon radiation and colour decoherence beyond the soft approximation
- Jet-quenching in a 3D hydrodynamic medium
- Ab Initio Coupling of Jets to Collective Flow in the Opacity Expansion Approach
- A systematic study of direct photon production in heavy ion collisions
- Spin correlations in final-state parton showers and jet observables
- Revisiting transverse momentum broadening in dense QCD media
- Constraints on the Path-Length Dependence of Jet Quenching in Nuclear Collisions at RHIC and LHC
- Dynamically groomed jet radius in heavy-ion collisions
- Quark and scalar propagators at next-to-eikonal accuracy in the CGC through a dynamical background gluon field
- The momentum broadening of energetic partons in an anisotropic plasma
- Medium-induced radiative kernel with the Improved Opacity Expansion
- Relating the description of gluon production in pA collisions and parton energy loss in AA collisions
- Time reclustering for jet quenching studies
- Jet Drift and Collective Flow in Heavy-Ion Collisions
- Nuclear matter effects on jet production at electron-ion colliders
- A modified in-medium evolution equation with color coherence
- Final State Gluon Emission in Deep-Inelastic Scattering at Next-to-Leading Twist
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- Medium induced gluon spectrum in dense inhomogeneous matter
- Quantum partonic transport in QCD matter
- Jet quenching in anisotropic flowing matter
- DREENA-A framework as a QGP tomography tool
- Medium-induced radiation with vacuum propagation in the pre-hydrodynamics phase
- Precise description of medium-induced emissions
- Asymmetric transverse momentum broadening in an inhomogeneous medium
- Jet quenching parameter in QCD kinetic theory
- Quantum to classical parton dynamics in QCD media
- Jet-temperature anisotropy revealed through high- data
- Transverse momentum broadening of medium-induced cascades in expanding media
- QED medium effects in (anti)neutrino-nucleus and electron-nucleus scattering: elastic scattering on nucleons
- Bayesian Constraints on Pre-Equilibrium Jet Quenching and Predictions for Oxygen Collisions
- QCD antenna radiative spectrum in dense media within the Improved Opacity Expansion
- In-medium gluon radiation spectrum with all-order resummation of multiple scatterings in longitudinally evolving media
- Jet quenching in out-of-equilibrium QCD matter
- Transverse spin polarization as a novel probe of medium-induced transverse-momentum-broadening effect
- Universality aspects of quantum corrections to transverse momentum broadening in QCD media