Toric gravitational instantons in gauged supergravity
arXiv:2410.19036 · doi:10.1103/PhysRevD.111.046024
Abstract
We introduce a general class of toric gravitational instantons in , gauged supergravity, namely Euclidean supersymmetric solutions with isometry. Such solutions are specified by a "supergravity labelled polytope", where the labels encode the 4-manifold topology, the choice of magnetic fluxes, and certain signs associated to the Killing spinor. Equivariant localization then allows us to write down the gravitational free energy for such a solution, assuming it exists, and study its properties. These results open the way for a systematic study of holography in this setting, where the dual large field theories are defined on the boundary 3-manifolds, which are (squashed) lens spaces or generalizations with orbifold singularities.
8 pages, 3 figures; v2: comments added, published version
References in corpus (20)
- Generalized Weyl Solutions
- Stationary and Axisymmetric Solutions of Higher-Dimensional General Relativity
- Consistent Kaluza-Klein Reductions for General Supersymmetric AdS Solutions
- The Holography of F-maximization
- Large matrix models for 3d theories: twisted index, free energy and black holes
- Supersymmetric spindles
- A Uniqueness theorem for 5-dimensional Einstein-Maxwell black holes
- Localization of the action in AdS/CFT
- Einstein metrics and complex singularities
- Rod-structure classification of gravitational instantons with U(1)xU(1) isometry
- On the Structure of Stationary and Axisymmetric Metrics
- A uniqueness theorem for stationary Kaluza-Klein black holes
- Equivariant localization in supergravity
- Large Partition Functions of the ABJM Theory
- Partition functions on 3d circle bundles and their gravity duals
- Equivariant localization and holography
- The Spindle Index from Localization
- Microstates of accelerating and supersymmetric AdS black holes from the spindle index
- Localization of the free energy in supergravity
- Localizing Wrapped M5-branes and Gravitational Blocks