Department:Massachusetts Institute of Technology. Office of the Dean for Undergraduate Education; Massachusetts Institute of Technology. Dept. of Physics; Kavli Institute for Astrophysics and Space Research; Massachusetts Institute of Technology. Center for Theoretical Physics
Publisher:Springer Science + Business Media B.V.
Date Issued:2010-11
Abstract:
We develop a systematic framework for realizing general anomaly-free chiral 6D supergravity theories in F-theory. We focus on 6D (1, 0) models with one tensor multiplet whose gauge group is a product of simple factors (modulo a finite abelian group) with matter in arbitrary representations. Such theories can be decomposed into blocks associated with the simple factors in the gauge group; each block depends only on the group factor and the matter charged under it. All 6D chiral supergravity models can be constructed by gluing such blocks together in accordance with constraints from anomalies. Associating a geometric structure to each block gives a dictionary for translating a supergravity model into a set of topological data for an F-theory construction. We construct the dictionary of F-theory divisors explicitly for some simple gauge group factors and associated matter representations. Using these building blocks we analyze a variety of models. We identify some 6D supergravity models which do not map to integral F-theory divisors, possibly indicating quantum inconsistency of these 6D theories.
Citation:Kumar, Vijay, David Morrison, and Washington Taylor. “Global Aspects of the Space of 6D N = 1 Supergravities.” Journal of High Energy Physics 2010.11 (2010) : 1-39.
Version:Author's final manuscript
Terms of Use:Creative Commons Attribution-Noncommercial-Share Alike 3.0