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August 20, 2025Journal of High Energy Physics13 citationsOpen Access

Black hole microstate counting from the gravitational path integral

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LILuca V. IliesiuSMSameer MurthyGTGustavo J. Turiaci

Key Points

  • The research reproduces the integer count of black hole microstates using gravitational path integrals, aligning with string theory predictions.
  • Findings show that the total number of black hole microstates matches the string theory index, even above extremality limits.
  • This investigation utilizes supersymmetric localization to address the one-loop determinant in the context of black holes.
  • The paper discusses the significance of boundary zero-modes within the framework of extremal black holes and quantum gravity.

Abstract

A bstract Reproducing the integer count of black hole microstates from the gravitational path integral is an important problem in quantum gravity. In this paper, we show that, by using supersymmetric localization, the gravitational path integral for 18 1 8 -BPS black holes in N N = 8 supergravity reproduces the index obtained in the string theory construction of such black holes, including all non-perturbatively suppressed geometries. A more refined argument then shows that, not only the black hole index, but also the total number of black hole microstates within an energy window above extremality that is polynomially suppressed in the charges, also matches this string theory index. To achieve such a match, we compute the one-loop determinant arising in the localization calculation for all N N = 2 supergravity supermultiplets in the N N = 8 gravity supermultiplet. Furthermore, we carefully account for the contribution of boundary zero-modes, which can be seen as arising from the zero-temperature limit of the N N = 4 super-Schwarzian, and show that performing the exact path integral over such modes provides a critical contribution needed for the match to be achieved. A discussion about the importance of such zero-modes in the wider context of all extremal black holes is presented in a companion paper.

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Cite This Study

Iliesiu et al. (2025) studied this question.

synapsesocial.com/papers/68af5d63ad7bf08b1eae09dahttps://doi.org/10.1007/jhep08(2025)152
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