English

Direct photon-charged hadron coincidence measurements in STAR

Nuclear Experiment 2014-11-20 v1

Abstract

The multiplicities of charged particle with transverse momentum (3 << pTh±p_T^{h^{\pm}} << 16 GeV/c\mathrm GeV/c) and pseudorapidity (η\mid\eta\mid \leq 1.0) associated with direct photons and π0\pi^{0} of high transverse momentum (8 << pTγ,π0p_T^{\gamma, \pi^{0}} << 16 GeV\mathrm GeV) at mid-rapidity (η\mid\eta\mid \leq 0.9) have been measured over a broad range of centralities for Au+AuAu+Au collisions and p+pp+p collisions at sNN\sqrt{s_{NN}} = 200 GeV\mathrm GeV in the STAR experiment. A transverse shower-shape analysis in the STAR Barrel Electromagnetic Calorimeter Shower Maximum Detector is used to discriminate between the shower of single photon and that of photons from the decays of high pTp_T π0\pi^{0}s. The relative azimuthal positions of the associated particles with respect to the trigger particle are constructed, and the associated charged hadron yields per direct γ\gamma are extracted. An agreement is observed between the measured suppression for direct γ\gamma-trigger associated-particle yields in Au+AuAu+Au compared to that in p+pp+p and theoretical calculations, although the uncertainties are large. Within the current uncertainties, the suppression is similar to the previously observed suppression in single-particle yields as well as in hadron-triggered associated-particle yields.

Keywords

Cite

@article{arxiv.0905.4242,
  title  = {Direct photon-charged hadron coincidence measurements in STAR},
  author = {Ahmed M. Hamed},
  journal= {arXiv preprint arXiv:0905.4242},
  year   = {2014}
}

Comments

High-pT Physics at LHC -09, Prague, Czech Republic