Finite-size prethermalization at the chaos-to-integrable crossover
Abstract
We investigate the infinite temperature dynamics of the complex Sachdev-Ye-Kitaev model (SYK) complimented with a single particle hopping term (SYK), leading to the chaos-to-integrable crossover of the many-body eigenstates. Due to the presence of the all-to-all connected SYK term, a non-equilibrium prethermal state emerges for a finite time window that scales with the relative interaction strength , between the SYK terms before eventually exhibiting thermalization for all . The scaling of the plateau with is consistent with the many-body Fock space structure of the time-evolved wave function. In the integrable limit, the wavefunction in the Fock space has a stretched exponential dependence on distance. On the contrary, in the SYK limit, it is distributed equally over the Fock space points characterizing the ergodic phase at long times.
Cite
@article{arxiv.2303.16019,
title = {Finite-size prethermalization at the chaos-to-integrable crossover},
author = {Johannes Dieplinger and Soumya Bera},
journal= {arXiv preprint arXiv:2303.16019},
year = {2025}
}
Comments
9 pages, 5 figures