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May 17, 2026Journal of High Energy Physics0 citationsOpen Access

Index saddle for supersymmetric F1-P black ring

PDPavan DharanipragadaGPGurmeet Singh PuniaAVAmitabh Virmani

Key Points

  • To construct the index saddle for the supersymmetric F1-P black ring and analyze its properties.
  • Derivation of the index saddle from a non-supersymmetric doubly spinning F1-P black ring.
  • Expression of the saddle as a three-center Bena-Warner solution.
  • Scaling analysis performed to compare the index with the microscopic result.
  • The resulting saddle has a finite-area event horizon, but the two-derivative index is zero.
  • Higher-derivative corrections are significant at certain singular subspaces on the horizon.
  • The index agrees with the microscopic result within a restricted parameter space, though the constant cannot be precisely determined.

Abstract

A bstract We construct the index saddle for the supersymmetric F1-P black ring. Our construction proceeds by taking a supersymmetric limit of a non-supersymmetric doubly spinning F1-P black ring. We express the resulting saddle as a three-center Bena-Warner solution. The black ring saddle possesses a finite-area event horizon, yet the two-derivative index vanishes. The solution is singular on certain subspaces of the horizon, where higher-derivative corrections are expected to become important. We argue that, once such corrections are taken into account, the solution can yield a finite result. In particular, we present a scaling analysis showing that the index agrees with the microscopic result, up to an overall numerical constant that cannot be fixed by the scaling argument alone. This analysis applies only within a restricted region of parameter space, whose full significance is not yet fully understood.

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Cite This Study

Dharanipragada et al. (2026) studied this question.

synapsesocial.com/papers/6a095c3f7880e6d24efe2572https://doi.org/10.1007/jhep05(2026)190
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