de Sitter Microstates from $T\bar T+\Lambda_2$ and the Hawking-Page Transition
Abstract
We obtain microstates accounting for the Gibbons-Hawking entropy in , along with a subleading logarithmic correction, from the solvable deformation of a seed CFT with sparse light spectrum. The microstates arise as the dressed CFT states near dimension , associated with the Hawking-Page transition; they dominate the real spectrum of the deformed theory. We exhibit an analogue of the Hawking-Page transition in de Sitter. Appropriate generalizations of the deformation are required to treat model-dependent local bulk physics (subleading at large central charge) and higher dimensions. These results add considerably to the already strong motivation for the continued pursuit of such generalizations along with a more complete characterization of type theories, building from existing results in these directions.
Keywords
Cite
@article{arxiv.2110.14670,
title = {de Sitter Microstates from $T\bar T+\Lambda_2$ and the Hawking-Page Transition},
author = {Evan Coleman and Edward A. Mazenc and Vasudev Shyam and Eva Silverstein and Ronak M Soni and Gonzalo Torroba and Sungyeon Yang},
journal= {arXiv preprint arXiv:2110.14670},
year = {2022}
}
Comments
23+7 pages. 3 figures