Author:
Gauntlett Jerome P.,Martelli Dario,Sparks James
Abstract
Abstract
We consider d = 3,
$$ \mathcal{N}=2 $$
N
=
2
gauge theories arising on membranes sitting at the apex of an arbitrary toric Calabi-Yau 4-fold cone singularity that are then further compactified on a Riemann surface, Σ
g
, with a topological twist that preserves two supersymmetries. If the theories flow to a superconformal quantum mechanics in the infrared, then they have a D = 11 supergravity dual of the form AdS2 × Y
9, with electric four-form flux and where Y
9 is topologically a fibration of a Sasakian Y
7 over Σ
g
. These D = 11 solutions are also expected to arise as the near horizon limit of magnetically charged black holes in AdS4 × Y
7, with a Sasaki-Einstein metric on Y
7. We show that an off-shell entropy function for the dual AdS2 solutions may be computed using the toric data and Kähler class parameters of the Calabi-Yau 4-fold, that are encoded in a master volume, as well as a set of integers that determine the fibration of Y
7 over Σ
g
and a Kähler class parameter for Σ
g
. We also discuss the class of supersymmetric AdS3 × Y
7 solutions of type IIB supergravity with five-form flux only in the case that Y
7 is toric, and show how the off-shell central charge of the dual field theory can be obtained from the toric data. We illustrate with several examples, finding agreement both with explicit supergravity solutions as well as with some known field theory results concerning ℐ-extremization.
Publisher
Springer Science and Business Media LLC
Subject
Nuclear and High Energy Physics
Cited by
35 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献