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Quantum Simulation
Thouless Energy Across Many-Body Localization Transition in Floquet Systems
arXiv
Authors: Michael Sonner, Maksym Serbyn, Zlatko Papić, Dmitry A. Abanin
Year
2020
Paper ID
387
Status
Preprint
Abstract Read
~2 min
Abstract Words
161
Citations
N/A
Abstract
The notion of Thouless energy plays a central role in the theory of Anderson localization. We investigate the scaling of Thouless energy across the many-body localization (MBL) transition in a Floquet model. We use a combination of methods that are reliable on the ergodic side of the transition (e.g., spectral form factor) and methods that work on the MBL side (e.g. typical matrix elements of local operators) to obtain a complete picture of the Thouless energy behavior across the transition. On the ergodic side, the Thouless energy tends to a value independent of system size, while at the transition it becomes comparable to the level spacing. Different probes yield consistent estimates of the Thouless energy in their overlapping regime of applicability, giving the location of the transition point nearly free of finite-size drift. This work establishes a connection between different definitions of Thouless energy in a many-body setting, and yields new insights into the MBL transition in Floquet systems.
Why This Paper Matters
- This paper contributes to the Quantum Simulation research area in the Quantum Articles archive.
- It adds a 2020 reference point for readers tracking recent quantum research.
- The notion of Thouless energy plays a central role in the theory of Anderson localization.
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