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Probing how bright the quark-gluon plasma glows in lattice QCD

Published 15 May 2025 in hep-lat and hep-ph | (2505.10295v1)

Abstract: Determining the spectrum of photons emitted by the quark-gluon plasma non-perturbatively remains an open computational challenge. In this letter we calculate two moments of that spectrum at a temperature T≈254 T\approx 254\,MeV, employing lattice QCD with two flavors of O(a)\mathrm{O}(a)-improved Wilson fermions, without facing an inverse problem. Our central value for the difference of these two moments, which is sensitive to photon energies ω≳πT\omega\gtrsim \pi T, is lower than, but compatible with that obtained by integrating the leading-order weak-coupling photon spectrum. This study informs the direct photon puzzle\textit{direct photon puzzle} in heavy-ion collision phenomenology, where it has proved difficult to simultaneously explain the yield and azimuthal anisotropy of photons not originating from final-state hadronic decays.

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