Publication | Open Access
Absence of dynamical localization in interacting driven systems
55
Citations
44
References
2017
Year
Quantum DynamicQuantum ScienceSystem DynamicEngineeringQuantum ComputingPhysicsNatural SciencesDriven SystemsQuantum Mechanical PropertyInteracting Particle SystemComplex Dynamic SystemQuantum SystemQuantum ChaosQuantum EntanglementDynamical LocalizationDynamical Localization PointBiophysicsDiffusion Coefficient Proportional
Using a numerically exact method we study the stability of dynamical localization to the addition of interactions in a periodically driven isolated quantum system which conserves only the total number of particles. We find that while even infinitesimally small interactions destroy dynamical localization, for weak interactions density transport is significantly suppressed and is asymptotically diffusive, with a diffusion coefficient proportional to the interaction strength. For systems tuned away from the dynamical localization point, even slightly, transport is dramatically enhanced and within the largest accessible systems sizes a diffusive regime is only pronounced for sufficiently small detunings.
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