Non-perturbative thermal QCD at very high temperatures

Fuente: arXiv
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Main Authors: Giusti, Leonardo, Bresciani, Matteo, Brida, Mattia Dalla, Harris, Tim, Laudicina, Davide, Pepe, Michele, Rescigno, Pietro
Format: Preprint
Published: 2024
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author Giusti, Leonardo
Bresciani, Matteo
Brida, Mattia Dalla
Harris, Tim
Laudicina, Davide
Pepe, Michele
Rescigno, Pietro
author_facet Giusti, Leonardo
Bresciani, Matteo
Brida, Mattia Dalla
Harris, Tim
Laudicina, Davide
Pepe, Michele
Rescigno, Pietro
contents We present a recently introduced strategy to study non-perturbatively thermal QCD up to temperatures of the order of the electro-weak scale, combining step scaling techniques and shifted boundary conditions. The former allow to renormalize the theory for a range of scales which spans several orders of magnitude with a moderate computational cost. Shifted boundary conditions avoid the need for the zero temperature subtraction in the Equation of State. As a consequence, the simulated lattices do not have to accommodate two very different scales, the pion mass and the temperature. Effective field theory arguments guarantee that finite volume effects can be kept under control safely. As a first application of this strategy, we present the results of the computation of the hadronic screening spectrum in QCD with $N_f=3$ flavours of massless quarks for temperatures from $T\sim 1$ GeV up to $\sim 160$ GeV.
format Preprint
id arxiv_https___arxiv_org_abs_2410_12626
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Non-perturbative thermal QCD at very high temperatures
Giusti, Leonardo
Bresciani, Matteo
Brida, Mattia Dalla
Harris, Tim
Laudicina, Davide
Pepe, Michele
Rescigno, Pietro
High Energy Physics - Lattice
We present a recently introduced strategy to study non-perturbatively thermal QCD up to temperatures of the order of the electro-weak scale, combining step scaling techniques and shifted boundary conditions. The former allow to renormalize the theory for a range of scales which spans several orders of magnitude with a moderate computational cost. Shifted boundary conditions avoid the need for the zero temperature subtraction in the Equation of State. As a consequence, the simulated lattices do not have to accommodate two very different scales, the pion mass and the temperature. Effective field theory arguments guarantee that finite volume effects can be kept under control safely. As a first application of this strategy, we present the results of the computation of the hadronic screening spectrum in QCD with $N_f=3$ flavours of massless quarks for temperatures from $T\sim 1$ GeV up to $\sim 160$ GeV.
title Non-perturbative thermal QCD at very high temperatures
topic High Energy Physics - Lattice
url https://arxiv.org/abs/2410.12626