Toward microstate counting beyond large N in localization and the dual one-loop quantum supergravity

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Abstract

The topologically twisted index for ABJM theory with gauge group U(N)k × U(N)−k has recently been shown, in the large-N limit, to reproduce the BekensteinHawking entropy of certain magnetically charged asymptotically AdS4 black holes. We numerically study the index beyond the large-N limit and provide evidence that it contains a subleading logarithmic term of the form −1/2 log N. On the holographic side, this term naturally arises from a one-loop computation. However, we find that the contribution coming from the near horizon states does not reproduce the field theory answer. We give some possible reasons for this apparent discrepancy.

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Liu, J. T., Pando Zayas, L. A., Rathee, V., & Zhao, W. (2018). Toward microstate counting beyond large N in localization and the dual one-loop quantum supergravity. Journal of High Energy Physics, 2018(1). https://doi.org/10.1007/JHEP01(2018)026

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