English

Gerbes, M5-Brane Anomalies and E_8 Gauge Theory

High Energy Physics - Theory 2008-11-26 v1 Differential Geometry

Abstract

Abelian gerbes and twisted bundles describe the topology of the NS-NS 3-form gauge field strength H. We review how they have been usefully applied to study and resolve global anomalies in open string theory. Abelian 2-gerbes and twisted nonabelian gerbes describe the topology of the 4-form field strength G of M-theory. We show that twisted nonabelian gerbes are relevant in the study and resolution of global anomalies of multiple coinciding M5-branes. Global anomalies for one M5-brane have been studied by Witten and by Diaconescu, Freed and Moore. The structure and the differential geometry of twisted nonabelian gerbes (i.e. modules for 2-gerbes) is defined and studied. The nonabelian 2-form gauge potential living on multiple coinciding M5-branes arises as curving (curvature) of twisted nonabelian gerbes. The nonabelian group is in general Ω~E8\tilde\Omega E_8, the central extension of the E_8 loop group. The twist is in general necessary to cancel global anomalies due to the nontriviality of the 11-dimensional 4-form G field strength and due to the possible torsion present in the cycles the M5-branes wrap. Our description of M5-branes global anomalies leads to the D4-branes one upon compactification of M-theory to Type IIA theory.

Cite

@article{arxiv.hep-th/0409200,
  title  = {Gerbes, M5-Brane Anomalies and E_8 Gauge Theory},
  author = {Paolo Aschieri and Branislav Jurco},
  journal= {arXiv preprint arXiv:hep-th/0409200},
  year   = {2008}
}

Comments

19 pages