Localization of a mobile impurity interacting with an Anderson insulator

Pietro Brighi, Alexios A. Michailidis, Kristina Kirova, Dmitry A. Abanin, and Maksym Serbyn
Phys. Rev. B 105, 224208 – Published 27 June 2022

Abstract

Thermalizing and localized many-body quantum systems present two distinct dynamical phases of matter. Recently the fate of a localized system coupled to a thermalizing system viewed as a quantum bath received significant theoretical and experimental attention. In this work, we study a mobile impurity, representing a small quantum bath, that interacts locally with an Anderson insulator with a finite density of localized particles. Using static Hartree approximation to obtain an effective disorder strength, we formulate an analytic criterion for the perturbative stability of the localization. Next, we use an approximate dynamical Hartree method and the quasi-exact time-evolved block decimation (TEBD) algorithm to study the dynamics of the system. We find that the dynamical Hartree approach which completely ignores entanglement between the impurity and localized particles predicts the delocalization of the system. In contrast, the full numerical simulation of the unitary dynamics with TEBD suggests the stability of localization on numerically accessible timescales. Finally, using an extension of the density matrix renormalization group algorithm to excited states (DMRG-X), we approximate the highly excited eigenstates of the system. We find that the impurity remains localized in the eigenstates and entanglement is enhanced in a finite region around the position of the impurity, confirming the dynamical predictions. Dynamics and the DMRG-X results provide compelling evidence for the stability of localization.

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  • Received 25 November 2021
  • Revised 2 June 2022
  • Accepted 3 June 2022

DOI:https://doi.org/10.1103/PhysRevB.105.224208

©2022 American Physical Society

Physics Subject Headings (PhySH)

Condensed Matter, Materials & Applied PhysicsAtomic, Molecular & OpticalStatistical Physics & Thermodynamics

Authors & Affiliations

Pietro Brighi1, Alexios A. Michailidis1,2, Kristina Kirova1, Dmitry A. Abanin2, and Maksym Serbyn1

  • 1IST Austria, Am Campus 1, 3400 Klosterneuburg, Austria
  • 2Department of Theoretical Physics, University of Geneva, 24 quai Ernest-Ansermet, 1211 Geneva, Switzerland

See Also

Propagation of many-body localization in an Anderson insulator

Pietro Brighi, Alexios A. Michailidis, Dmitry A. Abanin, and Maksym Serbyn
Phys. Rev. B 105, L220203 (2022)

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Vol. 105, Iss. 22 — 1 June 2022

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