Multiple Parton Scattering in Nuclei: Quark-quark Scattering
Abstract
Modifications to quark and antiquark fragmentation functions due to quark-quark (antiquark) double scattering in nuclear medium are studied systematically up to order \cal{O}(\alpha_{s}^2)\cal{O}(\alpha_s^2)tC_F/C_A=4/9$ times the ratio of quark and gluon distributions in the medium. Such a modification is not negligible for realistic kinematics and finite medium size. The modifications to quark (antiquark) fragmentation functions from quark-antiquark annihilation processes are shown to be determined by the antiquark (quark) distribution density in the medium. The asymmetry in quark and antiquark distributions in nuclei will lead to different modifications of quark and antiquark fragmentation functions inside a nucleus, which qualitatively explains the experimentally observed flavor dependence of the leading hadron suppression in semi-inclusive DIS off nuclear targets. The quark-antiquark annihilation processes also mix quark and gluon fragmentation functions in the large fractional momentum region, leading to a flavor dependence of jet quenching in heavy-ion collisions.
Cite
@article{arxiv.0704.0106,
title = {Multiple Parton Scattering in Nuclei: Quark-quark Scattering},
author = {Andreas Schafer and Xin-Nian Wang and Ben-Wei Zhang},
journal= {arXiv preprint arXiv:0704.0106},
year = {2008}
}
Comments
49 pages in elsart style and 16 figures. Two sentences added, final version appeared in Nucl. Phys. A