English

Monstrous BPS-Algebras and the Superstring Origin of Moonshine

High Energy Physics - Theory 2016-06-08 v2 Number Theory Representation Theory

Abstract

We provide a physics derivation of Monstrous moonshine. We show that the McKay-Thompson series TgT_g, gMg\in \mathbb{M}, can be interpreted as supersymmetric indices counting spacetime BPS-states in certain heterotic string models. The invariance groups of these series arise naturally as spacetime T-duality groups and their genus zero property descends from the behaviour of these heterotic models in suitable decompactification limits. We also show that the space of BPS-states forms a module for the Monstrous Lie algebras mg\mathfrak{m}_g, constructed by Borcherds and Carnahan. We argue that mg\mathfrak{m}_g arise in the heterotic models as algebras of spontaneously broken gauge symmetries, whose generators are in exact correspondence with BPS-states. This gives mg\mathfrak{m}_g an interpretation as a kind of BPS-algebra.

Keywords

Cite

@article{arxiv.1601.05412,
  title  = {Monstrous BPS-Algebras and the Superstring Origin of Moonshine},
  author = {Natalie M. Paquette and Daniel Persson and Roberto Volpato},
  journal= {arXiv preprint arXiv:1601.05412},
  year   = {2016}
}

Comments

73 pages, with results summarized in introduction. v2: added a discussion about coupling to gravity (section 3.3), additional references, minor corrections and improvements