English

Twisting and localization in supergravity: equivariant cohomology of BPS black holes

High Energy Physics - Theory 2022-10-07 v4

Abstract

We develop the formalism of supersymmetric localization in supergravity using the deformed BRST algebra defined in the presence of a supersymmetric background as recently formulated in arxiv:1806.03690. The gravitational functional integral localizes onto the cohomology of a global supercharge QeqQ_\text{eq}, obeying Qeq2=HQ_\text{eq}^2=H, where HH is a global symmetry of the background. Our construction naturally produces a twisted version of supergravity whenever supersymmetry can be realized off-shell. We present the details of the twisted graviton multiplet and ghost fields for the superconformal formulation of four-dimensional N=2 supergravity. As an application of our formalism, we systematize the computation of the exact quantum entropy of supersymmetric black holes. In particular, we compute the one-loop determinant of the QeqVQ_\text{eq} \mathcal{V} deformation operator for the off-shell fluctuations of the Weyl multiplet around the AdS2×S2AdS_2 \times S^2 saddle. This result, which is consistent with the corresponding large-charge on-shell analysis, is needed to complete the first-principles computation of the quantum entropy.

Keywords

Cite

@article{arxiv.1806.04479,
  title  = {Twisting and localization in supergravity: equivariant cohomology of BPS black holes},
  author = {Imtak Jeon and Sameer Murthy},
  journal= {arXiv preprint arXiv:1806.04479},
  year   = {2022}
}

Comments

V2: subsection 4.3 added, typo corrected, accepted version in JHEP; V3: typos corrected; V4: minor typos corrected