Local operators in quantum chaotic systems cascade toward non-local fractal structures whose dimension is tied by unitarity to the decay rate of local correlations, demonstrated exactly in dual-unitary circuits and numerically in others.
Title resolution pending
2 Pith papers cite this work. Polarity classification is still indexing.
verdicts
UNVERDICTED 2representative citing papers
Using Ruelle-Pollicott resonances, the work shows prethermalization stabilizes energy more than other observables in kicked Ising models, with finite shadowing time and no Trotterization transition in non-integrable quantum systems.
citing papers explorer
-
Quantum many-body operator cascade as a route to chaos
Local operators in quantum chaotic systems cascade toward non-local fractal structures whose dimension is tied by unitarity to the decay rate of local correlations, demonstrated exactly in dual-unitary circuits and numerically in others.
-
Prethermalization, shadowing breakdown, and the absence of Trotterization transition in quantum circuits
Using Ruelle-Pollicott resonances, the work shows prethermalization stabilizes energy more than other observables in kicked Ising models, with finite shadowing time and no Trotterization transition in non-integrable quantum systems.