Dissipation-enhanced scrambling in the SYK model coupled to a lossy cavity
Pietro Pelliconi, Bastien Lapierre, Shinsei Ryu
Abstract
We study the Yukawa-Sachdev-Ye-Kitaev model, a disordered model of N Majorana fermions and R=γN bosons in which the bosons are linearly coupled to independent realizations of SYK p-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 κ. Initializing the system in the steady state, we analyze the late-time fermionic relaxation rate and the Lyapunov exponent, solving the large-N theory both numerically and for p large, finding a rich landscape of dynamical behaviors. Most notably, the Lyapunov exponent remains positive for every value of κ and, for p>2, can even grow as κ increases. The QED case p=2, which lies between the fully chaotic regime p>2 and the integrable case p=1, exhibits special features. We also identify a critical value of the boson-to-fermion ratio γc ≈ 2/p2 separating distinct dynamical regimes.
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