paper

Dissipation-enhanced scrambling in the SYK model coupled to a lossy cavity

arXiv:2608.19310

Abstract

We study the Yukawa-Sachdev-Ye-Kitaev model, a disordered model of Majorana fermions and bosons in which the bosons are linearly coupled to independent realizations of SYK -body interactions, in the presence of dissipation, modeled by a Lindblad master equation. Motivated by recent proposals for implementing SYK models in quantum simulators, we focus on bosonic leakage at rate . Initializing the system in the steady state, we analyze the late-time fermionic relaxation rate and the Lyapunov exponent, solving the large- theory both numerically and for large, finding a rich landscape of dynamical behaviors. Most notably, the Lyapunov exponent remains positive for every value of and, for , can even grow as increases. The QED case , which lies between the fully chaotic regime and the integrable case , exhibits special features. We also identify a critical value of the boson-to-fermion ratio separating distinct dynamical regimes.

15 pages, 3 figures. v2: updated numerical results with better convergence, no substantial changes. Added data availability and repository for numerical codes