English

Quantum corrections to the BTZ black hole extremality bound from the conformal bootstrap

High Energy Physics - Theory 2020-01-29 v1

Abstract

Any unitary compact two-dimensional CFT with c>1c>1 and no symmetries beyond Virasoro has a parametrically large density of primary states at large spin for hˉ>hˉextrc124\bar{h}>\bar{h}_\text{extr}\sim \frac{c-1}{24}, of a universal form determined by modular invariance. By including the contribution of light primary operators and multi-twist composites constructed from them in the modular bootstrap, we find that hˉextr\bar{h}_\text{extr} receives corrections in a large spin expansion, which we compute at finite cc. The analysis uses a formulation of the modular S-transform as a Fourier transform acting on the density of primary states. For theories with gravitational duals, hˉextr\bar{h}_\text{extr} is interpreted as the extremality bound of rotating BTZ black holes, receiving quantum corrections which we compute at one loop by prohibiting naked singularities in the quantum-corrected geometry. This gravity result is reproduced by modular bootstrap in a semiclassical cc\to\infty limit.

Keywords

Cite

@article{arxiv.1906.04416,
  title  = {Quantum corrections to the BTZ black hole extremality bound from the conformal bootstrap},
  author = {Henry Maxfield},
  journal= {arXiv preprint arXiv:1906.04416},
  year   = {2020}
}
R2 v1 2026-06-23T09:49:48.408Z