Subdiffusion in a 1D Anderson insulator with random dephasing: Finite-size scaling, Griffiths effects, and possible implications for many-body localization
arXiv:2007.13783 · doi:10.1103/PhysRevB.103.184202
Abstract
We study transport in a one-dimensional boundary-driven Anderson insulator (the XX spin chain with onsite disorder) with randomly positioned onsite dephasing, observing a transition from diffusive to subdiffusive spin transport below a critical density of sites with dephasing. This model is intended to mimic the passage of an excitation through (many-body) insulating regions or ergodic bubbles, therefore providing a toy model for the diffusion-subdiffusion transition observed in the disordered Heisenberg model [1]. We also present the exact solution of a semiclassical model of conductors and insulators introduced in Ref. 2, which exhibits both diffusive and subdiffusive phases, and qualitatively reproduces the results of the quantum system. The critical properties of both models, when passing from diffusion to subdiffusion, are interpreted in terms of "Griffiths effects". We show that the finite-size scaling comes from the interplay of three characteristic lengths: one associated with disorder (the localization length), one with dephasing, and the third with the percolation problem defining large, rare, insulating regions. We conjecture that the latter, which grows logarithmically with system size, may potentially be responsible for the fact that heavy-tailed resistance distributions typical of Griffiths effects have not been observed in subdiffusive interacting systems.
15 pages, 11 figures. Paper restructured and discussions extended
References in corpus (17)
- Many body localization and thermalization in quantum statistical mechanics
- Anderson Transitions
- Localization of interacting fermions at high temperature
- Many-body localization edge in the random-field Heisenberg chain
- Third quantization: a general method to solve master equations for quadratic open Fermi systems
- Anomalous diffusion and Griffiths effects near the many-body localization transition
- Recent progress in many-body localization
- Absence of diffusion in an interacting system of spinless fermions on a one-dimensional disordered lattice
- Ergodicity breaking in a model showing many-body localization
- Anomalous thermalization in ergodic systems
- How a small quantum bath can thermalize long localized chains
- Can we study the many-body localisation transition?
- Renormalization-group study of the many-body localization transition in one dimension
- Many-body localization near the critical point
- Transport in a disordered tight-binding chain with dephasing
- Chain breaking and Kosterlitz-Thouless scaling at the many-body localization transition in the random field Heisenberg spin chain
- Are many-body localized systems stable in the presence of a small bath?
Cited by in corpus (22)
- Many-Body Localization in the Age of Classical Computing
- A constructive theory of the numerically accessible many-body localized to thermal crossover
- Phenomenology of the Prethermal Many-Body Localized Regime
- Logarithmic, noise-induced dynamics in the Anderson insulator
- Density and current statistics in boundary-driven monitored fermionic chains
- Sub-diffusive phases in open clean long-range systems
- Destruction of Localization by Thermal Inclusions: Anomalous Transport and Griffiths Effects in the Anderson and André-Aubry-Harper Models
- Localization of a mobile impurity interacting with an Anderson insulator
- The connection between Hilbert-space return probability and real-space autocorrelations in quantum spin chains
- Open-system spin transport and operator weight dissipation in spin chains
- Localization crossover and subdiffusive transport in a classical facilitated network model of a disordered, interacting quantum spin chain
- Non-equilibrium boundary driven quantum systems: models, methods and properties
- Relaxation of imbalance in a disordered XX model with on-site dephasing
- Coupled Layer Construction for Synthetic Hall Effects in Driven Systems
- Subdiffusive spin transport in disordered classical Heisenberg chains
- Slow melting of a disordered quantum crystal
- Diffusion and Thermalization in a Boundary-Driven Dephasing Model
- Ballistic conductance with and without disorder in a boundary-driven XXZ spin chain
- Quantum transport under oscillatory drive with disordered amplitude
- Numerical Study of Disordered Noninteracting Chains Coupled to a Local Lindblad Bath
- Design Principles for Enhanced Quantum Transport with Site-Dependent Noise
- Approaching the scaling limit of transport through lattices with dephasing