paper

Minimal Supergravity and the supersymmetry of Arnold-Beltrami Flux branes

arXiv:1511.06245 · doi:10.1007/JHEP06(2016)018

Abstract

In this paper we study some properties of the newly found Arnold-Beltrami flux-brane solutions to the minimal supergravity. To this end we first single out the appropriate Free Differential Algebra containing both a gauge -form and a gauge -form : then we present the complete rheonomic parametrization of all the generalized curvatures. This allows us to identify two-brane configurations with Arnold-Beltrami fluxes in the transverse space with exact solutions of supergravity and to analyze the Killing spinor equation in their background. We find that there is no preserved supersymmetry if there are no additional translational Killing vectors. Guided by this principle we explicitly construct Arnold-Beltrami flux two-branes that preserve , and of the original supersymmetry. Two-branes without fluxes are instead BPS states and preserve supersymmetry. For each two-brane solution we carefully study its discrete symmetry that is always given by some appropriate crystallographic group . Such symmetry groups are transmitted to the gauge theories on the brane world--volume that occur in the gauge/gravity correspondence. Furthermore we illustrate the intriguing relation between gauge fluxes in two-brane solutions and hyperinstantons in topological sigma-models.

56 pages, LaTeX source, 8 jpg figures, typos corrected