Scaling patterns for azimuthal anisotropy in Pb+Pb collisions at Root_s = 2.76 TeV: Further constraints on transport coefficients
arXiv:1203.3605
Abstract
Azimuthal anisotropy measurements for charged hadrons, characterized by the second order Fourier coefficient , are used to investigate the path length () and transverse momentum () dependent jet quenching patterns of the QCD medium produced in Pb+Pb collisions at \,TeV. shows a linear decrease as and a linear increase with the medium path length difference () in- and out of the event plane. These patterns compliment a prior observation of the scaling of jet quenching () measurements. Together, they suggest that radiative parton energy loss is a dominant mechanism for jet suppression, and stems from the difference in the parton propagation length .An estimate of the transport coefficient , gives a value comparable to that obtained in a prior study of the scaling properties of . These results suggest that high- azimuthal anisotropy measurements provide strong constraints for delineating the mechanism(s) for parton energy loss, as well as for reliable extraction of .
5 pages, 4 figures, submitted for publication