Fermions and Type IIB Supergravity On Squashed Sasaki-Einstein Manifolds
Abstract
We discuss the dimensional reduction of fermionic modes in a recently found class of consistent truncations of type IIB supergravity compactified on squashed five-dimensional Sasaki-Einstein manifolds. We derive the lower dimensional equations of motion and effective action, and comment on the supersymmetry of the resulting theory, which is consistent with N=4 gauged supergravity in , coupled to two vector multiplets. We compute fermion masses by linearizing around two vacua of the theory: one that breaks N=4 down to N=2 spontaneously, and a second one which preserves no supersymmetries. The truncations under consideration are noteworthy in that they retain massive modes which are charged under a U(1) subgroup of the -symmetry, a feature that makes them interesting for applications to condensed matter phenomena via gauge/gravity duality. In this light, as an application of our general results we exhibit the coupling of the fermions to the type IIB holographic superconductor, and find a consistent further truncation of the fermion sector that retains a single spin-1/2 mode.
Cite
@article{arxiv.1009.1615,
title = {Fermions and Type IIB Supergravity On Squashed Sasaki-Einstein Manifolds},
author = {Ibrahima Bah and Alberto Faraggi and Juan I. Jottar and Robert G. Leigh},
journal= {arXiv preprint arXiv:1009.1615},
year = {2011}
}
Comments
43 pages, 2 figures, PDFLaTeX; v2: added references, typos corrected, minor changes