Supermembranes with fewer supersymmetries
Abstract
The usual supermembrane solution of supergravity interpolates between and , has symmetry and preserves of the spacetime supersymmetries for either orientation of the round . Here we show that more general supermembrane solutions may be obtained by replacing the round by any seven-dimensional Einstein space . These have symmetry , where is the isometry group of . For example, for the squashed . For one orientation of , they preserve spacetime supersymmetries where is the number of Killing spinors on ; for the opposite orientation they preserve no supersymmetries since then has no Killing spinors. For example for the left-squashed owing to its Weyl holonomy, whereas for the right-squashed . All these solutions saturate the same Bogomol'nyi bound between the mass and charge. Similar replacements of by Einstein spaces yield new super -brane solutions in other spacetime dimensions . In particular, simultaneous dimensional reduction of the above supermembranes on leads to a new class of elementary string solutions which also have fewer supersymmetries.
Cite
@article{arxiv.hep-th/9511162,
title = {Supermembranes with fewer supersymmetries},
author = {M. J. Duff and H. Lu and C. N. Pope and E. Sezgin},
journal= {arXiv preprint arXiv:hep-th/9511162},
year = {2009}
}
Comments
14 pages, Latex, no figures