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The thermal photon emissivity at the QCD chiral crossover from imaginary momentum correlators
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abstract
The thermal photon emissivity at the QCD chiral crossover is investigated using imaginary momentum correlators. These have been measured on a newly generated $20 \times 96^3$ lattice-QCD ensemble with $\mathcal{O}(a)$-improved Wilson quarks and physical up, down and strange quark masses at a temperature $T=154$\,MeV near the pseudo-critical temperature. In order to realize the photon on-shell condition, the spatially transverse Euclidean correlators have to be evaluated at imaginary spatial momenta. Employing a bounding method, we present a preliminary result on the quantity $H_E(\omega_1)$, which corresponds to an energy-moment of the photon spectral function $\sigma(\omega)/\omega$ defined by the weight function $1/(\omega^2+\omega_n^2)$, the $\omega_n$ being integer multiples of $2\pi T$.
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Cited by 1 Pith paper
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Probing how bright the quark-gluon plasma glows in lattice QCD
At T≈254 MeV, lattice QCD gives -[HE(ω2)-HE(ω1)]/T^2 = 0.193(74), on the low side of the AMY weak-coupling prediction interval [0.25,0.30].
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