5d-4d Correspondence in Twisted M-theory on a Conifold
Abstract
We study twisted M-theory in a general conifold background, and describe it in terms of a 5d non-commutative Chern-Simons-matter theory, which is equivalent to 5d non-commutative Chern-Simons theory for a supergroup. In an equivalent description as twisted type IIA string theory, the matter degrees of freedom arise from topological strings stretched between stacks of D6-branes. In order to study 5d Chern-Simons-matter theories with a boundary, we first construct and investigate the properties of a 4d non-commutative gauged chiral WZW model. We prove the gauge invariant coupling of this 4d theory to the bulk 5d Chern-Simons theory defined on , and further generalize our results to the 5d Chern-Simons-matter theory. We also investigate the toroidal current algebra of the 4d chiral WZW model that arises from radial quantization along one of the complex planes. Finally, we show that a gauged non-commutative chiral 4d WZW model arises from the partition function for quantum 5d non-commutative Chern-Simons theory with boundaries in the BV-BFV formalism, and further generalize this 5d-4d correspondence to the 5d non-commutative Chern-Simons-matter theory for the case of adjoint matter.
Cite
@article{arxiv.2411.04849,
title = {5d-4d Correspondence in Twisted M-theory on a Conifold},
author = {Meer Ashwinkumar and Mir Faizal and Arshid Shabir and Douglas J. Smith and Yehao Zhou},
journal= {arXiv preprint arXiv:2411.04849},
year = {2025}
}
Comments
39 pages, 2 figures. Further clarifications, typos corrected