arXiv:nucl-th/0104021·v2·Nuclear Theory
Multiple scattering and -broadening at RHIC energies
G. Papp🇭🇺 · G.G. Barnafoldi🇭🇺 · G. Fai🇺🇸 · P. Levai🇭🇺 · Y. Zhang🇺🇸
Abstract
In ultrarelativistic heavy-ion collisions, in the 2 GeV 6 GeV transverse momentum region, the soft and semi-hard multiple scattering of the incoming nucleons in the nuclear medium results in the broadening of the expected hadronic (e.g. pion) spectra relative to proton-proton () collisions. Thus, higher transverse-momentum regions are populated than in collisions. In a perturbative QCD based calculation we include the intrinsic transverse momentum () of the partons in the nucleon (determined from collisions), augmented by the extra broadening obtained via a systematic analysis of proton-nucleus () collisions in the energy range 17 39 AGeV. The original polynomial spectra are modified, and a nearly exponential spectrum appears in the region 2 GeV. At present RHIC energies (130 AGeV), the slope of the calculated spectra is reminiscent of that of fluid-dynamical descriptions, but lacks any thermal origin. We determine and discuss the size of the modifications originating in multiple scattering, which lead to this state of affairs.
Comments: 4 pages, talk presented at the 15th International Conference on Ultra-Relativistic Nucleus-Nucleus Collisions (QM 2001), Long Island, New York, January 15 - 20, 2001