Inconsistencies in, and short pathlength correction to, in and collisions
arXiv:2305.13182 · doi:10.1140/epjc/s10052-023-12234-y
Abstract
We present the first leading hadron suppression predictions in and collisions from a convolved radiative and collisional energy loss model in which partons propagate through a realistic background and in which the inelastic energy loss receives a short pathlength correction. We find that the short pathlength correction is small for and meson in both and collisions. However the short pathlength correction leads to a surprisingly large reduction in suppression for mesons in and even collisions. We systematically check the consistency of the assumptions used in the radiative energy loss derivation - such as collinearity, softness, and large formation time - with the final numerical model. While collinearity and softness are self-consistently satisfied in the final numerics, we find that the large formation time approximation breaks down at modest to high momenta GeV. We find that both the size of the small pathlength correction to and the at which the large formation time assumption breaks down are acutely sensitive to the chosen distribution of scattering centers in the plasma.
22 pages (excluding references) and 21 figures. Updated to be in line with corresponding published journal article
References in corpus (21)
- Glauber Modeling in High Energy Nuclear Collisions
- Viscosity Information from Relativistic Nuclear Collisions: How Perfect is the Fluid Observed at RHIC?
- Elliptic and triangular flow in event-by-event (3+1)D viscous hydrodynamics
- Global analysis of fragmentation functions for pions and kaons and their uncertainties
- Calculating the Jet Quenching Parameter from AdS/CFT
- Event-by-event gluon multiplicity, energy density and eccentricities at RHIC and LHC
- The theory and phenomenology of perturbative QCD based jet quenching
- Evidence for collective multi-particle correlations in pPb collisions
- Antiangular Ordering of Gluon Radiation in QCD Media
- Common Suppression Pattern of eta and pi^0 Mesons at High Transverse Momentum in Au+Au Collisions at sqrt(s_NN) = 200 GeV
- Centrality Dependence of pi^0 and eta Production at Large Transverse Momentum in sqrt(s_NN) = 200 GeV d+Au Collisions
- Collisional Energy Loss in a Finite Size QCD Matter
- Radiative energy loss in a finite dynamical QCD medium
- Finite-size effects on the radiative energy loss of a fast parton in hot and dense strongly interacting matter
- Higher twist jet broadening and classical propagation
- Ab Initio Coupling of Jets to Collective Flow in the Opacity Expansion Approach
- The non-linear evolution of jet quenching
- Radiative heavy quark energy loss in a dynamical QCD medium
- Running coupling effects in the evolution of jet quenching
- Impact of fully coherent energy loss on heavy meson production in pA collisions
- Asymmetric transverse momentum broadening in an inhomogeneous medium
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- Geometric Bias and Centrality Dependence of Jet Quenching in High-Energy Nuclear Collisions
- Finite System Size Correction to the Effective Coupling in Scattering