Quenching of light hadron spectra in pA collisions from fully coherent energy loss
arXiv:2003.01987 · doi:10.1103/PhysRevLett.125.032301
Abstract
We single out the role of fully coherent induced gluon radiation on light hadron production in pA collisions. The effect has an interesting color structure, as the induced radiation depends on the global color charge of the partonic subprocess final state. Baseline predictions for light hadron nuclear suppression in pPb collisions at the LHC are provided, taking into account only the effect of fully coherent energy loss, which proves of the same order of magnitude as gluon shadowing or saturation. This underlines the need to include fully coherent energy loss in phenomenological studies of hadron production in pA collisions.
5 pages, 4 figures
References in corpus (10)
- The Color Glass Condensate
- CGC predictions for p+Pb collisions at the LHC
- Forward production in proton-nucleus collisions at high energy
- CGC predictions for p+A collisions at the LHC and signature of QCD saturation
- Nuclear modification of high transverse momentum particle production in p+A collisions at RHIC and LHC
- Revisiting scaling properties of medium-induced gluon radiation
- Next-to-leading order forward hadron production in the small- regime: rapidity factorization
- Quarkonium suppression in heavy-ion collisions from coherent energy loss in cold nuclear matter
- Measurement of , and production in collisions at
- Interference between initial and final state radiation in a QCD medium
Cited by in corpus (6)
- Impact of fully coherent energy loss on heavy meson production in pA collisions
- Prospects for quarkonium studies at the high-luminosity LHC
- Fully coherent energy loss effects on light hadron production in pA collisions
- Inconsistencies in, and short pathlength correction to, in and collisions
- Nuclear -broadening of Drell-Yan and quarkonium production from SPS to LHC
- Depletion of atmospheric neutrino fluxes from parton energy loss