Confined-deconfined interface tension and latent heat in SU(N) gauge theory

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Autori principali: Rindlisbacher, Tobias, Rummukainen, Kari, Salami, Ahmed
Natura: Preprint
Pubblicazione: 2025
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author Rindlisbacher, Tobias
Rummukainen, Kari
Salami, Ahmed
author_facet Rindlisbacher, Tobias
Rummukainen, Kari
Salami, Ahmed
contents We present high-precision lattice results for the confined-deconfined interface tension and the latent heat of pure SU($N$) gauge theories up to $N=10$ and investigate their asymptotic $N$-dependency. For both quantities we observe the leading $N^2$ behaviour and subleading corrections, with the result for the interface tension $σ/T_c^3 = 0.0182(7) N^2 - 0.194(15)$ and for the latent heat $L/T_c^4 = 0.360(6) N^2 - 1.88(17)$. We use the \emph{mixed phase ensemble} method - where the system is constrained so that half of the volume is in the confined phase and the other half in the deconfined phase - and the interface tension is obtained by measuring the capillary wave fluctuation spectra of the interfaces between the two phases. The method bypasses supercritical slowing down from which other methods for determining the interface tension suffer, and as a by-product produces accurate estimates of the critical inverse gauge coupling as a function of the inverse temperature. We use the latter to determine the lattice beta function values, required to compute the latent heat from the discontinuity in the average plaquette action across the confined-deconfined transition.
format Preprint
id arxiv_https___arxiv_org_abs_2506_15509
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Confined-deconfined interface tension and latent heat in SU(N) gauge theory
Rindlisbacher, Tobias
Rummukainen, Kari
Salami, Ahmed
High Energy Physics - Lattice
High Energy Physics - Phenomenology
We present high-precision lattice results for the confined-deconfined interface tension and the latent heat of pure SU($N$) gauge theories up to $N=10$ and investigate their asymptotic $N$-dependency. For both quantities we observe the leading $N^2$ behaviour and subleading corrections, with the result for the interface tension $σ/T_c^3 = 0.0182(7) N^2 - 0.194(15)$ and for the latent heat $L/T_c^4 = 0.360(6) N^2 - 1.88(17)$. We use the \emph{mixed phase ensemble} method - where the system is constrained so that half of the volume is in the confined phase and the other half in the deconfined phase - and the interface tension is obtained by measuring the capillary wave fluctuation spectra of the interfaces between the two phases. The method bypasses supercritical slowing down from which other methods for determining the interface tension suffer, and as a by-product produces accurate estimates of the critical inverse gauge coupling as a function of the inverse temperature. We use the latter to determine the lattice beta function values, required to compute the latent heat from the discontinuity in the average plaquette action across the confined-deconfined transition.
title Confined-deconfined interface tension and latent heat in SU(N) gauge theory
topic High Energy Physics - Lattice
High Energy Physics - Phenomenology
url https://arxiv.org/abs/2506.15509