Magnetic and electric contributions to the energy loss in a dynamical QCD medium
arXiv:1105.4288 · doi:10.1088/0954-3899/39/4/045007
Abstract
The computation of radiative energy loss in a finite size QCD medium with dynamical constituents is a key ingredient for obtaining reliable predictions for jet quenching in ultra-relativistic heavy ion collisions. It was previously shown that energy loss in dynamical QCD medium is significantly higher compared to static QCD medium. To understand this difference, we here analyze magnetic and electric contributions to energy loss in dynamical QCD medium. We find that the significantly higher energy loss in the dynamical case is entirely due to appearance of magnetic contribution in the dynamical medium. While for asymptotically high energies, the energy loss in static and dynamical medium approach the same value, we find that the physical origin of the energy loss in these two cases is different.
6 pages, 4 figures
References in corpus (7)
- Heavy Quark Radiative Energy Loss in QCD Matter
- Radiative energy loss in a finite dynamical QCD medium
- Lattice calculation of gluon screening masses
- Where is the charm quark energy loss at RHIC?
- Theoretical formalism of radiative jet energy loss in a finite size dynamical QCD medium
- Collisional Energy Loss of Non Asymptotic Jets in a QGP
- Radiative heavy quark energy loss in a dynamical QCD medium