English

Bigerbes

Algebraic Topology 2022-08-19 v5 Differential Geometry

Abstract

The bigerbes introduced here give a refinement of the notion of 2-gerbes, representing degree four integral cohomology classes of a space. Defined in terms of bisimplicial line bundles, bigerbes have a symmetry with respect to which they form 'bundle 2-gerbes' in two ways; this structure replaces higher associativity conditions. We provide natural examples, including a Brylinski-McLaughlin bigerbe associated to a principal G-bundle for a simply connected simple Lie group. This represents the first Pontryagin class of the bundle, and is the obstruction to the lifting problem on the associated principal bundle over the loop space to the structure group consisting of a central extension of the loop group; in particular, trivializations of this bigerbe for a spin manifold are in bijection with string structures on the original manifold. Other natural examples represent 'decomposable' 4-classes arising as cup products, a universal bigerbe on K(Z,4) involving its based double loop space, and the representation of any 4-class on a space by a bigerbe involving its free double loop space. The generalization to 'multigerbes' of arbitrary degree is also described.

Keywords

Cite

@article{arxiv.1905.03081,
  title  = {Bigerbes},
  author = {Chris Kottke and Richard B. Melrose},
  journal= {arXiv preprint arXiv:1905.03081},
  year   = {2022}
}

Comments

59 pages. Version 5 addresses an error appearing in the published version having to do with an ill-defined version of Cech cohomology, which is corrected here by the systematic use of well-behaved covers