We investigate the thermal properties of SU(3) Yang-Mills theory across the deconfinement phase transition considering the framework of shifted boundary conditions in the temporal direction. By measuring the entropy density s(Tc)/Tc^3​ on both sides of the phase transition at the critical temperature Tc​, we can retrieve the latent heat h. Additionally, we compute h from the discontinuity in the trace anomaly of the energy-momentum tensor. Simulations are performed at five different values of the lattice spacing, allowing us to extrapolate the results to the continuum limit. The two observables produce compatible results, giving the combined estimate h=1.175(10) in the continuum limit, achieving a precision of about 1%. Moreover, we determine the critical temperature in physical units with permille accuracy, yielding Tc t_0 = 0.24915(29). These results allow us to connect the confined and the deconfined phases with precision, and we present an improved computation of the Equation of State across the phase transition for temperatures between 0 and 3.4T_c.

Virzì, L., Giusti, L., Hirasawa, M., Pepe, M. (2025). Computation of the latent heat of the deconfinement phase transition of SU(3) Yang-Mills theory. In The 41st International Symposium on Lattice Field Theory (LATTICE2024) (pp.1-10). Sissa Medialab [10.22323/1.466.0186].

Computation of the latent heat of the deconfinement phase transition of SU(3) Yang-Mills theory

Virzì, Luca;Giusti, Leonardo;Hirasawa, Mitsuaki;Pepe, Michele
2025

Abstract

We investigate the thermal properties of SU(3) Yang-Mills theory across the deconfinement phase transition considering the framework of shifted boundary conditions in the temporal direction. By measuring the entropy density s(Tc)/Tc^3​ on both sides of the phase transition at the critical temperature Tc​, we can retrieve the latent heat h. Additionally, we compute h from the discontinuity in the trace anomaly of the energy-momentum tensor. Simulations are performed at five different values of the lattice spacing, allowing us to extrapolate the results to the continuum limit. The two observables produce compatible results, giving the combined estimate h=1.175(10) in the continuum limit, achieving a precision of about 1%. Moreover, we determine the critical temperature in physical units with permille accuracy, yielding Tc t_0 = 0.24915(29). These results allow us to connect the confined and the deconfined phases with precision, and we present an improved computation of the Equation of State across the phase transition for temperatures between 0 and 3.4T_c.
paper
Lattice Gauge Theories, Yang-Mills, QCD Thermodynamics
English
The 41st International Symposium on Lattice Field Theory (LATTICE2024) - 28 July - 3 August 2024
2024
The 41st International Symposium on Lattice Field Theory (LATTICE2024)
18-dic-2025
2025
466
1
10
https://pos.sissa.it/466/186
open
Virzì, L., Giusti, L., Hirasawa, M., Pepe, M. (2025). Computation of the latent heat of the deconfinement phase transition of SU(3) Yang-Mills theory. In The 41st International Symposium on Lattice Field Theory (LATTICE2024) (pp.1-10). Sissa Medialab [10.22323/1.466.0186].
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Descrizione: Computation of the latent heat of the deconfinement phase transition of SU(3) Yang-Mills theory
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/594125
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