4.8 Article

Universal Slow Growth of Entanglement in Interacting Strongly Disordered Systems

Journal

PHYSICAL REVIEW LETTERS
Volume 110, Issue 26, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.110.260601

Keywords

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Funding

  1. Perimeter Institute for Theoretical Physics
  2. Government of Canada through Industry Canada
  3. Province of Ontario through the Ministry of Economic Development Innovation
  4. DOE [DE-SC0002140]

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Recent numerical work by Bardarson, Pollmann, and Moore revealed a slow, logarithmic in time, growth of the entanglement entropy for initial product states in a putative many-body localized phase. We show that this surprising phenomenon results from the dephasing due to exponentially small interaction-induced corrections to the eigenenergies of different states. For weak interactions, we find that the entanglement entropy grows as xi ln(Vt/(h) over bar), where V is the interaction strength, and xi is the single-particle localization length. The saturated value of the entanglement entropy at long times is determined by the participation ratios of the initial state over the eigenstates of the subsystem. Our work shows that the logarithmic entanglement growth is a universal phenomenon characteristic of the many-body localized phase in any number of spatial dimensions, and reveals a broad hierarchy of dephasing time scales present in such a phase.

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