Photon production rate from Transverse-Longitudinal ($T-L$) mesonic correlator on the lattice
Abstract
Thermal photons from the QGP provide important information about the interaction among plasma constituents. The photon production rate from a thermally equilibrated system is proportional to the transverse spectral function . One can also calculate the photon production rate from the difference between (transverse) and (longitudinal) projections, as vanishes on the photon point. Because the UV part of is suppressed, the corresponding Euclidean correlator receives most of its contribution from the IR part. We calculate the correlator on flavour HISQ configurations with at temperature of about (220 MeV). We have used two ans\"{a}tze for the spectral function: 1) A polynomial connected to the UV region consistent with OPE expansion and 2) a hydro-inspired spectral function. We have also applied the Backus-Gilbert method to estimate the spectral function. All these different approaches are combined to estimate the photon production rate.
Keywords
Cite
@article{arxiv.2212.11509,
title = {Photon production rate from Transverse-Longitudinal ($T-L$) mesonic correlator on the lattice},
author = {Dibyendu Bala and Sajid Ali and Anthony Francis and Greg Jackson and Olaf Kaczmarek and Tristan Ueding},
journal= {arXiv preprint arXiv:2212.11509},
year = {2023}
}
Comments
10 pages, 7 figures, Contribution to the 39th International Symposium on Lattice Field Theory, 8th-13th August 2022, Bonn, Germany