Three-algebra for supermembrane and two-algebra for superstring
Abstract
While string or Yang-Mills theories are based on Lie algebra or two-algebra structure, recent studies indicate that M-theory may require a one higher, three-algebra structure. Here we construct a covariant action for a supermembrane in eleven dimensions, which is invariant under global supersymmetry, local fermionic symmetry and worldvolume diffeomorphism. Our action is classically on-shell equivalent to the celebrated Bergshoeff-Sezgin-Townsend action. However, the novelty is that we spell the action genuinely in terms of Nambu three-brackets: All the derivatives appear through Nambu brackets and hence it manifests the three-algebra structure. Further the double dimensional reduction of our action gives straightforwardly to a type IIA string action featuring two-algebra. Applying the same method, we also construct a covariant action for type IIB superstring, leading directly to the IKKT matrix model.
Cite
@article{arxiv.0902.2417,
title = {Three-algebra for supermembrane and two-algebra for superstring},
author = {Kanghoon Lee and Jeong-Hyuck Park},
journal= {arXiv preprint arXiv:0902.2417},
year = {2009}
}
Comments
1+15 pages, no figure; Refs added, Accepted for publication in JHEP