Is $\hat{q}$ a physical quantity or just a parameter? and other unanswered questions in High-$p_T$ Physics
Abstract
The many different theoretical studies of energy loss of a quark or gluon traversing a medium have one thing in common: the transport coefficient of a gluon in the medium, , which is defined as the mean 4-momentum transfer, , by a gluon to the medium per gluon mean free path, . In the original BDMPSZ formalism, the energy loss of an outgoing parton, , per unit length () of a medium with total length , due to coherent gluon bremsstrahlung, is proportional to the and takes the form: , where , is the mean momentum transfer per collision. Thus, the total energy loss in the medium goes like . Additionally, the accumulated momentum, , transverse to a gluon traversing a length in the medium is well approximated by . A simple estimate shows that the should be observable at RHIC at GeV via the broadening of di-hadron azimuthal correlations resulting in an azimuthal width larger in AuAu than in collisions . Measurements relevant to this issue will be discussed as well as recent STAR jet results presented at QM2014. Other topics to be discussed include the danger of using forward energy to define centrality in A collisions for high measurements, the danger of not using comparison data at the same in the same detector for or lately for measurements.
Keywords
Cite
@article{arxiv.1504.03657,
title = {Is $\hat{q}$ a physical quantity or just a parameter? and other unanswered questions in High-$p_T$ Physics},
author = {M. J. Tannenbaum},
journal= {arXiv preprint arXiv:1504.03657},
year = {2015}
}
Comments
12 pages, 11 figures, to appear in the Proceedings of the 10th International Workshop on High-pT Physics in the RHIC/LHC era (9-12 September 2014, SUBATECH, Nantes, France). The 11th International Workshop will be at BNL/RBRC, Upton, NY, 12-15 April 2016. Small changes following review before publication