Characterizing time-irreversibility in disordered fermionic systems by the effect of local perturbations
arXiv:1702.01622 · doi:10.1103/PhysRevLett.119.016802
Abstract
We study the effects of local perturbations on the dynamics of disordered fermionic systems in order to characterize time-irreversibility. We focus on three different systems, the non-interacting Anderson and Aubry-André-Harper (AAH-) models, and the interacting spinless disordered t-V chain. First, we consider the effect on the full many-body wave-functions by measuring the Loschmidt echo (LE). We show that in the extended/ergodic phase the LE decays exponentially fast with time, while in the localized phase the decay is algebraic. We demonstrate that the exponent of the decay of the LE in the localized phase diverges proportionally to the single-particle localization length as we approach the metal-insulator transition in the AAH model. Second, we probe different phases of disordered systems by studying the time expectation value of local observables evolved with two Hamiltonians that differ by a spatially local perturbation. Remarkably, we find that many-body localized systems could lose memory of the initial state in the long-time limit, in contrast to the non-interacting localized phase where some memory is always preserved.
References in corpus (12)
- Single-Atom Resolved Fluorescence Imaging of an Atomic Mott Insulator
- Many-body localization edge in the random-field Heisenberg chain
- The Kernel Polynomial Method
- Many body localization in Heisenberg XXZ magnet in a random field
- Dynamics of Loschmidt echoes and fidelity decay
- Measuring entanglement growth in quench dynamics of bosons in an optical lattice
- Ergodicity breaking in a model showing many-body localization
- Time dependent impurity in ultracold fermions: orthogonality catastrophe and beyond
- Interferometric probes of many-body localization
- Quantum Quenches, Thermalization and Many-Body Localization
- Quantum Mutual Information as a Probe for Many-Body Localization
- Many-Body Localization Transition, Temporal Fluctuations of the Loschmidt Echo, and Scrambling
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- Distinguishing an Anderson Insulator from a Many-Body Localized phase through space-time snapshots with Neural Networks
- Stable many-body localization under random continuous measurements in the no-click limit
- Impurity dephasing in a Bose-Hubbard model
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- Statistics of orthogonality catastrophe events in localised disordered lattices
- Real-time dynamics of 1D and 2D bosonic quantum matter deep in the many-body localized phase
- Non-Hermitian Multipole Skin Effects Challenge Localization