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Langlands Dualities through Bethe/Gauge Correspondence for 3d Gauge Theories

Mathematical Physics 2023-12-21 v1 High Energy Physics - Theory math.MP Representation Theory

Abstract

For non-simple laced Lie algebras, the BN\text{B}_{N} and CN\text{C}_{N} are Langlands dual to each other in mathematical. In this article, we give another Bethe/Gauge correspondence between 3d (or 2d) classical Lie group supersymmetry gauge theory with closed and open XXZ\text{XXZ} (or XXX\text{XXX}) spin chain. Here, the representations of the ADE\text{ADE} Lie algebras are self-dual, and while for the non-simple laced Lie algebras BN\text{B}_{N} and CN\text{C}_{N}, their roles are exchanged in contrast with the results in \cite{DZ23a}. From Bethe/Gauge correspondence point of view, the two types of the effective superpotentials are Langlands duality to each other. For the BN\text{B}_{N}-type Lie algebra, a remarkable feature is that, to fix the spin sites by boundaries through Bethe/Gauge, the spins of the sites will be reversed. This is similarly to the so called electron-hole effect, we call this as a boundary-spin effect, a new kind of duality.

Keywords

Cite

@article{arxiv.2312.13080,
  title  = {Langlands Dualities through Bethe/Gauge Correspondence for 3d Gauge Theories},
  author = {Xiang-Mao Ding and Ting Zhang},
  journal= {arXiv preprint arXiv:2312.13080},
  year   = {2023}
}

Comments

25 pages, one figure