Distorting the Hump-backed Plateau of Jets with Dense QCD Matter
arXiv:hep-ph/0506218
Abstract
The hump-backed plateau of the single inclusive distribution of hadrons inside a jet provides a standard test of the interplay between probabilistic parton splitting and quantum coherence in QCD. The medium-induced modification of this QCD radiation physics is expected to give access to the properties of the dense medium produced in relativistic heavy ion collisions. Here, we introduce a formulation of medium-induced parton energy loss, which treats all leading and subleading parton branchings equally, and which - for showering in the vacuum - accounts for the observed distribution of soft jet fragments. We show that the strong suppression of single inclusive hadron spectra measured in Au-Au collisions at the Relativistic Heavy Ion Collider (RHIC) implies a characteristic distortion of the hump-backed plateau; we determine, as a function of jet energy, to what extent the soft jet fragments can be measured above some momentum cut. Our study further indicates that the approximate pT-independence of the measured nuclear modification factor does not exclude a significant Q^2-dependence of parton energy loss.
4 pages RevTex, 3 eps-figures
Cited by in corpus (14)
- Heavy-Quark Kinetics in the QGP at LHC
- Thermal Dileptons at LHC
- Q-PYTHIA: a medium-modified implementation of final state radiation
- Measurement of jet fragmentation into charged particles in pp and PbPb collisions at sqrt(s[NN]) = 2.76 TeV
- The quark-gluon medium
- Measurement of jet-medium interactions via direct photon-hadron correlations in AuAu and Au collisions at GeV
- Jet Evolution in the Quark-Gluon Plasma from RHIC to the LHC
- Quark Matter 2005: Experimental Conference Summary
- "QM19 summary talk": Outlook and future of heavy-ion collisions
- Collisional parton energy loss in a finite size QCD medium revisited: Off mass-shell effects
- Q-PYTHIA - a Monte Carlo implementation for jet quenching
- Critical examination of RHIC paradigms-mostly high pT
- Jet reshaping in heavy-ion collisions
- Jet reconstruction in heavy ion collisions (emphasis on Underlying Event background subtraction)