Static quark-antiquark interactions at nonzero temperature from lattice QCD
Bala, Dibyendu; Kaczmarek, Olaf; Larsen, Rasmus Normann; Mukherjee, Swagato; Parkar, Gaurang Yatin; Petreczky, Peter; Rothkopf, Alexander Karl; Weber, Johannes Heinrich
Peer reviewed, Journal article
Published version
Permanent lenke
https://hdl.handle.net/11250/3042238Utgivelsesdato
2022Metadata
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Originalversjon
Bala, D., Kaczmarek, O., Larsen, R., Mukherjee, S., Parkar, G., Petreczky, P., ... & HotQCD Collaboration. (2022). Static quark-antiquark interactions at nonzero temperature from lattice QCD. Physical Review D, 105(5), 054513. 10.1103/PhysRevD.105.054513Sammendrag
flavor lattice QCD calculations. The study consists of two parts. The first investigates the properties of Wilson line correlators in Coulomb gauge and compares to predictions of hard-thermal loop perturbation theory. As a second step we extract the spectral functions underlying the correlators using four conceptually different methods: spectral function fits, a hard-thermal-loop-inspired fit for the correlation function, Padé rational approximation and the Bayesian reconstruction. We find that our high-statistics Euclidean lattice data are amenable to different hypotheses for the shapes of the spectral function and we compare the implications of each analysis method for the existence and properties of a well-defined ground state spectral peak.