Four-dimensional Lens Space Index from Two-dimensional Chiral Algebra
High Energy Physics - Theory
2018-08-15 v2 Quantum Algebra
Representation Theory
Abstract
We study the supersymmetric partition function on , or the lens space index of four-dimensional superconformal field theories and their connection to two-dimensional chiral algebras. We primarily focus on free theories as well as Argyres-Douglas theories of type and . We observe that in specific limits, the lens space index is reproduced in terms of the (refined) character of an appropriately twisted module of the associated two-dimensional chiral algebra or a generalized vertex operator algebra. The particular twisted module is determined by the choice of discrete holonomies for the flavor symmetry in four-dimensions.
Cite
@article{arxiv.1710.06029,
title = {Four-dimensional Lens Space Index from Two-dimensional Chiral Algebra},
author = {Martin Fluder and Jaewon Song},
journal= {arXiv preprint arXiv:1710.06029},
year = {2018}
}
Comments
47 pages; v2: minor corrections, published version