Renormalisation Group Flows of Deformed SYK Models
Abstract
We explore computationally tractable deformations of the SYK model. The deformed theories are described by the sum of two SYK Hamiltonians with differing numbers, and , of interacting fermions. In the large limit, employing analytic and numerical tools, we compute finite temperature correlation functions and thermodynamic quantities. We identify a novel analytically solvable model in the large limit. We find that, under certain circumstances, the thermal RG flow in the strongly coupled infrared phase exhibits two regions of linear-in-temperature entropy, which we interpret in terms of Schwarzian actions. Using conformal perturbation theory we compute the leading relevant correction away from the intermediate near-conformal fixed point. Holographic spacetimes in two spacetime dimensions that reproduce the thermodynamics of the microphysical theory are discussed. These are flow geometries that interpolate between two Euclidean near-AdS spacetimes with different radii. The Schwarzian soft mode corresponding to the AdS region in the deep interior resides entirely within the geometric regime.
Cite
@article{arxiv.2212.04944,
title = {Renormalisation Group Flows of Deformed SYK Models},
author = {Dionysios Anninos and Damián A. Galante and Sameer U. Sheorey},
journal= {arXiv preprint arXiv:2212.04944},
year = {2023}
}
Comments
27 pages plus appendices, 16 figures. v2: updated to match published version