Jet Quenching in Evolving QGP Medium
arXiv:0907.4691 · doi:10.1016/j.nuclphysa.2009.10.012
Abstract
A short summary of different approaches to the parton energy loss problem is given. A particular attention is paid to the differences between various models. A possible solution to the problem of distinguishing competing approaches is discussed.
8 pages, 8 figures - To appear in the conference proceedings for Quark Matter 2009, March 30 - April 4, Knoxville, Tennessee
References in corpus (17)
- Equation of state and QCD transition at finite temperature
- Space-time evolution of bulk QCD matter
- Radiative and Collisional Jet Energy Loss in the Quark-Gluon Plasma at RHIC
- Systematic Comparison of Jet Energy-Loss Schemes in a realistic hydrodynamic medium
- Q-PYTHIA: a medium-modified implementation of final state radiation
- A Monte Carlo Model for 'Jet Quenching'
- High energy factorization in nucleus-nucleus collisions
- Jet energy loss, photon production, and photon-hadron correlations at RHIC
- High energy factorization in nucleus-nucleus collisions II - Multigluon correlations
- Electromagnetic radiation from nuclear collisions at RHIC energies
- Parton shower evolution in a 3-d hydrodynamical medium
- A systematic study of direct photon production in heavy ion collisions
- Radiative heavy quark energy loss in a dynamical QCD medium
- The evolving distribution of hard partons traversing a hot strongly interacting plasma
- Resolving the plasma profile via differential single inclusive suppression
- Photons from nuclear collisions at RHIC energies
- Modification of the dihadron fragmentation function in nuclear matter
Cited by in corpus (4)
- Empirical determination of charm quark energy loss and its consequences for azimuthal anisotropy
- Puzzles, Progress, Prospects: pre-Summary for the Quark Matter 2009 Conference
- Transverse spin polarization as a novel probe of medium-induced transverse-momentum-broadening effect
- Jet Medium interactions at Quark Matter 09