Photon elliptic flow in relativistic heavy-ion collisions: hadronic versus partonic sources
O. Linnyk, V.P. Konchakovski, W. Cassing, E. L. Bratkovskaya

TL;DR
This paper investigates the sources of photon elliptic flow in relativistic heavy-ion collisions, demonstrating that hadronic interactions significantly contribute to the observed flow and that QGP effects influence the photon spectrum's slope.
Contribution
The study employs the PHSD transport approach to distinguish hadronic and partonic photon sources, revealing the substantial role of hadronic channels in photon elliptic flow.
Findings
Photons from QGP contribute less than 50% to the spectrum.
Large photon v2 is mainly due to hadronic scattering channels.
QGP radiation affects the slope parameter T_eff of the photon spectrum.
Abstract
We study the transverse momentum spectrum and the elliptic flow v2 of photons produced in Au+Au collisions at sqrt(s)=200 GeV using the Parton-Hadron-String Dynamics (PHSD) transport approach. As sources for photon production, we incorporate the interactions of off-shell quarks and gluons in the strongly interacting quark-gluon plasma (q+qbar->g+gamma and q/qbar+g->q/qbar+gamma), the decays of hadrons (pi->gamma+gamma, eta->gamma+gamma, omega->pi+gamma, eta'->rho+gamma, phi->eta+gamma, a_1->pi+gamma) as well as their interactions (pi+pi->rho+gamma, rho+pi->pi+gamma, bremsstrahlung m+m->m+m+gamma). The PHSD calculations reproduce the transverse momentum spectrum, the effective temperature T_eff and the elliptic flow v2 of both inclusive and direct photons as measured by the PHENIX Collaboration. The photons produced in the QGP contribute slightly less then 50% to the observed spectrum,…
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