Author:
Doroud Nima,Gomis Jaume,Le Floch Bruno,Lee Sungjay
Abstract
Abstract
We compute exactly the partition function of two dimensional
$ \mathcal{N} $
= (2, 2) gauge theories on S
2 and show that it admits two dual descriptions: either as an integral over the Coulomb branch or as a sum over vortex and anti-vortex excitations on the Higgs branches of the theory. We further demonstrate that correlation functions in two dimensional Liouville/Toda CFT compute the S
2 partition function for a class of
$ \mathcal{N} $
= (2, 2) gauge theories, thereby uncovering novel modular properties in two dimensional gauge theories. Some of these gauge theories flow in the infrared to Calabi-Yau sigma models — such as the conifold — and the topology changing flop transition is realized as crossing symmetry in Liouville/Toda CFT. Evidence for Seiberg duality in two dimensions is exhibited by demonstrating that the partition function of conjectured Seiberg dual pairs are the same.
Publisher
Springer Science and Business Media LLC
Subject
Nuclear and High Energy Physics
Cited by
205 articles.
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