Parton energy loss in glasma
arXiv:1205.6462 · doi:10.1016/j.physletb.2012.11.001
Abstract
We study the synchrotron-like gluon emission in -collisions from fast partons due to interaction with the coherent glasma color fields. Our results show that for RHIC and LHC conditions the contribution of this mechanism to parton energy loss is much smaller than the radiative energy loss in the plasma phase.
14 pages, 3 figures
References in corpus (14)
- The Color Glass Condensate
- Some Features of the Glasma
- Radiative and Collisional Jet Energy Loss in the Quark-Gluon Plasma at RHIC
- Systematic parameter study of hadron spectra and elliptic flow from viscous hydrodynamic simulations of Au+Au collisions at sqrt(s_NN) = 200 GeV
- Energy density of the Glasma
- Hadron spectra and elliptic flow for 200 A GeV Au+Au collisions from viscous hydrodynamics coupled to a Boltzmann cascade
- Expanding color flux tubes and instabilities
- Parton energy loss in an expanding quark-gluon plasma: Radiative vs collisional
- Small x physics and RHIC data
- Jet quenching with running coupling including radiative and collisional energy losses
- Energy dependence of the saturation scale and the charged multiplicity in pp and AA collisions
- Variation of jet quenching from RHIC to LHC and thermal suppression of QCD coupling constant
- Decay of Color Gauge Fields in Heavy Ion Collisions and Nielsen-Olesen Instability
- Parton energy loss due to synchrotron-like gluon emission
Cited by in corpus (7)
- Jet momentum broadening in the pre-equilibrium Glasma
- Anisotropic momentum broadening in the 2+1D Glasma: analytic weak field approximation and lattice simulations
- Transport of hard probes through glasma
- Parton energy loss in the mini quark-gluon plasma and jet quenching in proton-proton collisions
- The impact of glasma on heavy flavor azimuthal correlations and spectra
- Phenomenology of collinear photon emission from quark-gluon plasma in collisions
- Jet quenching in out-of-equilibrium QCD matter