Exotic supergravities and the Swampland
Abstract
In six dimensions, there is an exotic supermultiplet that contains only fields of spin , but no graviton, and that on a circle reduces to 5D supergravity. It has been proposed that, if suitable interactions exist, the theory might provide a consistent alternative UV completion for 5D supergravity, realizing a supersymmetric version of asymptotic safety. In this note we argue that any Lorentz-invariant theory (interacting or not) carries an exact global symmetry when compactified on , and is therefore incompatible with the Swampland no global symmetries conjecture. Another example of exotic supergravity, the 6D theory, does not have this problem. We study the general case and find that the only exotic spin-2 field that reduces to Einsteinian gravity and has no global symmetries when compactified on a high-dimensional torus is that of the theory. All other possibilities either yield several gravitons or have global symmetries.
Keywords
Cite
@article{arxiv.2403.15535,
title = {Exotic supergravities and the Swampland},
author = {Miguel Montero and Michelangelo Tartaglia},
journal= {arXiv preprint arXiv:2403.15535},
year = {2024}
}
Comments
19 pages + appendix + bibliography; 2 figures; v2: references & typos