English

dS JT Gravity and Double-Scaled SYK

High Energy Physics - Theory 2024-03-07 v2

Abstract

This paper pushes forward a conjecture made in [1] that a high-temperature double-scaled limit of the SYK model (DSSYK\mathrm{DSSYK}_{\infty}) describes a de Sitter-like space. We identify a specific bulk theory which we conjecture to be dual to DSSYK\mathrm{DSSYK}_{\infty}, namely JT gravity with positive cosmological constant (dS-JT). We focus our attention on a specific solution of dS-JT in which spacetime is a particular bounded submanifold of dS2_2 and the profile of the dilaton coincides with that of the radial coordinate of a static patch. This solution can be understood as a dimensional reduction of dS3_3 and was previously studied by [2] in a context different than ours. We describe the geometry of this solution in detail and discuss some ways in which the physics of this solution matches known physics of DSSYK\mathrm{DSSYK}_{\infty}. We describe an example of holographic bulk emergence and find a new role for the timescale tβGHlog(S)t_* \sim \beta_{\mathrm{GH}}\log(S) as the timescale governing this emergence. We discuss some constraints on the boundary-to-bulk operator mapping. This paper provides additional background and context for a companion paper [3] by L. Susskind, which will appear simultaneously.

Keywords

Cite

@article{arxiv.2209.09997,
  title  = {dS JT Gravity and Double-Scaled SYK},
  author = {Adel A. Rahman},
  journal= {arXiv preprint arXiv:2209.09997},
  year   = {2024}
}

Comments

33 + 7 pages, 12 figures; V2: minor corrections to section 5 (results unchanged), added figure, removed appendix

R2 v1 2026-06-28T01:46:30.475Z