Two-pion interferometry for the granular sources in ultrarelativistic heavy ion collisions
arXiv:1107.3477 · doi:10.1088/0256-307X/28/12/122501
Abstract
We investigate the two-pion interferometry in ultrarelativistic heavy ion collisions in the granular source model of quark-gluon plasma droplets. The pion transverse momentum spectra and HBT radii of the granular sources agree well with the experimental data of the GeV Au-Au and TeV Pb-Pb most central collisions. In the granular source model the larger initial system breakup time may lead to the larger HBT radii , , and . However, the large droplet transverse expansion and limited average relative emitting time of particles in the granular source lead to small ratios of the transverse HBT radii .
4 pages, 4 figures
References in corpus (5)
- Two-pion Bose-Einstein correlations in central Pb-Pb collisions at = 2.76 TeV
- Bulk Viscosity driven clusterization of quark-gluon plasma and early freeze-out in relativistic heavy-ion collisions
- Analysis of pion elliptic flows and HBT interferometry in a granular quark-gluon plasma droplet model
- Characteristic quantities of pion-emitting sources extracted by model-independent analysis in relativistic heavy ion collisions
- Detection of source inhomogeneity through event-by-event two-pion Bose-Einstein correlations