English

Phase transitions in 3D gravity and fractal dimension

High Energy Physics - Theory 2018-06-13 v1 General Relativity and Quantum Cosmology Geometric Topology

Abstract

We show that for three dimensional gravity with higher genus boundary conditions, if the theory possesses a sufficiently light scalar, there is a second order phase transition where the scalar field condenses. This three dimensional version of the holographic superconducting phase transition occurs even though the pure gravity solutions are locally AdS3_3. This is in addition to the first order Hawking-Page-like phase transitions between different locally AdS3_3 handlebodies. This implies that the R\'enyi entropies of holographic CFTs will undergo phase transitions as the R\'enyi parameter is varied, as long as the theory possesses a scalar operator which is lighter than a certain critical dimension. We show that this critical dimension has an elegant mathematical interpretation as the Hausdorff dimension of the limit set of a quotient group of AdS3_3, and use this to compute it, analytically near the boundary of moduli space and numerically in the interior of moduli space. We compare this to a CFT computation generalizing recent work of Belin, Keller and Zadeh, bounding the critical dimension using higher genus conformal blocks, and find a surprisingly good match.

Keywords

Cite

@article{arxiv.1802.07275,
  title  = {Phase transitions in 3D gravity and fractal dimension},
  author = {Xi Dong and Shaun Maguire and Alexander Maloney and Henry Maxfield},
  journal= {arXiv preprint arXiv:1802.07275},
  year   = {2018}
}
R2 v1 2026-06-23T00:28:04.549Z