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Entanglement of the 3-state Potts model via form factor bootstrap: total and symmetry resolved entropies

Capizzi, L., Horváth, D. X., Calabrese, P. & Castro-Alvaredo, O. A. ORCID: 0000-0003-1876-7341 (2022). Entanglement of the 3-state Potts model via form factor bootstrap: total and symmetry resolved entropies. Journal of High Energy Physics, 2022(5), article number 113. doi: 10.1007/jhep05(2022)113

Abstract

In this paper, we apply the form factor bootstrap approach to branch point twist fields in the q-state Potts model for q ≤ 3. For q = 3 this is an integrable interacting quantum field theory with an internal discrete ℤ3 symmetry and therefore provides an ideal starting point for the investigation of the symmetry resolved entanglement entropies. However, more generally, for q ≤ 3 the standard Rényi and entanglement entropies are also accessible through the bootstrap programme. In our work we present form factor solutions both for the standard branch point twist field with q ≤ 3 and for the composite (or symmetry resolved) branch point twist field with q = 3. In both cases, the form factor equations are solved for two particles and the solutions are carefully checked via the ∆-sum rule. Using our analytic predictions, we compute the leading finite-size corrections to the entanglement entropy and entanglement equipartition for a single interval in the ground state.

Publication Type: Article
Additional Information: © The Authors. This article is distributed under the terms of the Creative Commons Attribution License (CC-BY 4.0), which permits any use, distribution and reproduction in any medium, provided the original author(s) and source are credited.
Publisher Keywords: Field Theories in Lower Dimensions, Global Symmetries, Integrable Field Theories
Subjects: Q Science > QA Mathematics
Departments: School of Science & Technology
School of Science & Technology > Department of Mathematics
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