Persistence of energy-dependent localization in the Anderson-Hubbard model with increasing system size and doping
arXiv:1601.03010 · doi:10.1088/0953-8984/28/17/175601
Abstract
Non-interacting systems with bounded disorder have been shown to exhibit sharp density of states peaks at the band edge which coincide with an energy range of abruptly suppressed localization. Recent work has shown that these features also occur in the presence of on-site interactions in ensembles of two-site Anderson-Hubbard systems at half filling. Here we demonstrate that this effect in interacting systems persists away from half filling, and moreover that energy regions with suppressed localization continue to appear in ensembles of larger systems despite a loss of sharp features in the density of states.
4 pages, 2 figures
References in corpus (6)
- Many body localization and thermalization in quantum statistical mechanics
- Phenomenology of fully many-body-localized systems
- Universal dynamics and renormalization in many body localized systems
- Disorder-Induced Stabilization of the Pseudogap in Strongly Correlated Systems
- Dependence of decoherence-assisted classicality on the ways a system is partitioned into subsystems
- Energy dependence of localization with interactions and disorder: The generalized inverse participation ratio of an ensemble of two-site Anderson-Hubbard systems