The local SYK model and its triple scaling limit
Abstract
We study a model of fermions with random couplings similar to conventional SYK with number of flavours of fermions, at large . Unlike the conventional SYK model, which has all-to-all couplings, the model we study, which we call local SYK, has a much less number of random couplings, just in number and with only local interactions. It is shown that there exists a limit in which the local SYK model can be solved using the chord diagram techniques, analogous to the double-scaled limit of conventional SYK. This limit corresponds to taking the size of the fermion coupling terms, , to scale linearly with . A further triple scaling limit is taken to analyze the low energy limit and it is shown that the OTOCs saturate the chaos bound, paralleling the analysis in the conventional SYK.
Keywords
Cite
@article{arxiv.2306.01285,
title = {The local SYK model and its triple scaling limit},
author = {Takanori Anegawa and Norihiro Iizuka and Sunil Kumar Sake},
journal= {arXiv preprint arXiv:2306.01285},
year = {2023}
}
Comments
10 pages, 2 figures. v2: appendix A added where we show that the factor for fermion exchange is independent for any pair