Rapidity distribution of photons from an anisotropic Quark-Gluon-Plasma

Abstract

We calculate rapidity distribution of photons due to Compton and annihilation processes from Quark Gluon Plasma (QGP) with pre-equilibrium momentum-space anisotropy. We also include contributions from hadronic matter with late stage transverse expansion. A phenomenological model has been used for the time evolution of hard momentum scale p hard(τ) and anisotropy parameter (τ). As a result of pre-equilibrium momentum-space anisotropy, we find significant modification of photons rapidity distribution. For example, with fixed initial condition (FIC) free-streaming (δ=2) interpolating model we observe significant enhancement of photon rapidity distribution at fixed pT, where as for FIC collisionally-broadened (δ=2/3) interpolating model the yield increases till y 1. Beyond that suppression is observed. With fixed final multiplicity (FFM) free-streaming interpolating model we predict enhancement of photon yield which is less than the case of FIC. Suppression is always observed for FFM collisionally-broadened interpolating model.

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