Exact $T\overline{T}$ deformation of two-dimensional Maxwell theory
Abstract
-deformed two-dimensional quantum Maxwell theory on the torus is examined, taking into account nonperturbative effects in the deformation parameter . We study the deformed partition function solving the relevant flow equation at the level of individual flux sectors. Summing exactly the "instanton" series, we obtain a well-defined expression for the partition function at arbitrary . For , the quantum spectrum of the theory experiences a truncation, the partition function reducing to a sum over a finite set of positive-energy states. For instead, the appearance of nonperturbative contributions in drastically modifies the structure of the partition function, regularizing its naive divergences through instanton-like subtractions. For each flux sector, we show that the semiclassical contribution is dominated by the deformed classical action. The theory is observed to undergo infinite-order phase transitions for certain values of , associated with the vanishing of Polyakov-loop correlators.
Keywords
Cite
@article{arxiv.2203.09683,
title = {Exact $T\overline{T}$ deformation of two-dimensional Maxwell theory},
author = {Luca Griguolo and Rodolfo Panerai and Jacopo Papalini and Domenico Seminara},
journal= {arXiv preprint arXiv:2203.09683},
year = {2022}
}
Comments
6 pages, 2 figures