T-Duality and Flavor Symmetries in Little String Theories
Abstract
We explore the T-duality web of 6D Heterotic Little String Theories, focusing on flavor algebra reducing deformations. A careful analysis of the full flavor algebra, including Abelian factors, shows that the flavor rank is preserved under T-duality. This suggests a new T-duality invariant in addition to the Coulomb branch dimension and the two-group structure constants. We also engineer Little String Theories with non-simply laced flavor algebras, whose appearance we attribute to certain discrete 3-form fluxes in M-theory. Geometrically, these theories are engineered in F-theory with non-K\"ahler favorable K3 fibers. This geometric origin leads us to propose that freezing fluxes are preserved across T-duality. Along the way, we discuss various exotic models, including two inequivalent models that are dual to the same theory, and a family of self-T-dual models.
Keywords
Cite
@article{arxiv.2311.02168,
title = {T-Duality and Flavor Symmetries in Little String Theories},
author = {Hamza Ahmed and Paul-Konstantin Oehlmann and Fabian Ruehle},
journal= {arXiv preprint arXiv:2311.02168},
year = {2023}
}
Comments
33+7 pages , 4 figures, 4 tables