PaperPanorama

arXiv:2002.06411·v2·High Energy Physics — Phenomenology

Interplaying mechanisms behind inclusive jet and extraction of jet energy loss distributions

Y. He (1)🇨🇳 · S. Cao (2)🇺🇸 · W. Chen (1)🇨🇳 · T. Luo (1)🇨🇳 · L.-G. Pang (3 and 4)🇺🇸 · X.-N. Wang (1, 3 and 4) ((1) Central China Normal University, (2) Wayne State University, (3) University of California, Berkeley, (4) Lawrence Berkeley National Laboratory)🇨🇳

Abstract

The observed inclusive jet suppression in heavy-ion collisions at LHC has a very weak dependence over a large range of = 50-1000 GeV and is almost independent of the colliding energy, though the initial energy density of the bulk medium has increased from = 2.76 to 5.02 TeV by about 20%. This interesting phenomenon is investigated in the linear Boltzmann transport (LBT) model for jet propagation in an event-by-event 3+1D hydro background. We show that the dependence of jet is determined by the initial spectrum in collisions and dependence of jet energy loss. Furthermore, jet energy loss distributions for inclusive jet and jet at both LHC energies are extracted directly from experimental data through the state-of-art Bayesian analysis. The averaged jet energy loss has a weak dependence and the scaled jet energy loss distributions have a large width, both of which are consistent with the LBT simulations and indicate that jet quenching is caused by only a few out-of-cone jet medium scatterings.

Comments: 4 pages, 3 figures, contribution to the proceedings of XXVIIIth International Conference on Ultrarelativistic Nucleus-Nucleus Collisions (Quark Matter 2019)

Citation historyopen in Citation History ↗