English

Virtual Photon Emission from Quark-Gluon Plasma

High Energy Physics - Phenomenology 2008-11-26 v2

Abstract

We recently proposed an empirical approach for the Landau-Pomeranchuk-Migdal (LPM) effects in photon emission from the quark gluon plasma as a function of photon mass. This approach was based on Generalized Emission Functions (GEF) for photon emission, derived at a fixed temperature and strong coupling constant. In the present work, we have extended the LPM calculations for several temperatures and strong coupling strengths. The integral equations for (f~(p~){\bf \tilde{f}(\tilde{p}_\perp)}) and (g~(p~)\tilde{g}({\bf \tilde{p}_\perp})) are solved by the iterations method for the variable set \{p0,q0,Q2,T,αsp_0,q_0,Q^2,T,\alpha_s\}, considering bremsstrahlung and aws\bf aws processes. We generalize the dynamical scaling variables, xTx_T, xLx_L, for bremsstrahlung and {\bf aws} processes which are now functions of variables p0,q0,Q2,T,αsp_0,q_0,Q^2,T,\alpha_s. The GEF introduced earlier, gTbg^b_T, gTag^a_T, gLbg^b_L, gLag^a_L, are also generalized for any temperatures and coupling strengths. From this, the imaginary part of the photon polarization tensor as a function of photon mass and energy can be calculated as a one dimensional integral over these GEF and parton distribution functions in the plasma. However, for phenomenological studies of experimental data, one needs a simple empirical formula without involving parton momentum integrations. Therefore, we present a phenomenological formula for imaginary photon polarization tensor as a function of \{q0,Q2,T,αsq_0,Q^2,T,\alpha_s\} that includes bremsstrahlung and aws\bf aws mechanisms along with LPM effects.

Keywords

Cite

@article{arxiv.0704.3676,
  title  = {Virtual Photon Emission from Quark-Gluon Plasma},
  author = {S. V. Suryanarayana},
  journal= {arXiv preprint arXiv:0704.3676},
  year   = {2008}
}
R2 v1 2026-06-21T08:22:55.080Z