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Area of Science:

  • Quantum physics
  • Condensed matter theory
  • Statistical mechanics

Background:

  • Many-body localization (MBL) is a phenomenon where quantum systems fail to thermalize.
  • Understanding MBL in systems with interactions is crucial for quantum computing and information.

Purpose of the Study:

  • To investigate the survival of the many-body localized phase in a system coupled to a central d-level system.
  • To explore the conditions for thermalizing phases in such a coupled system.

Main Methods:

  • Analysis of a many-body localized system globally coupled to a central d-level system.
  • Examination of system behavior under appropriate scaling of d and L.

Main Results:

  • Evidence found for the survival of the localized phase under specific scaling conditions.
  • Identification of two potential thermalizing phases, contingent on the ergodicity of the central qudit.

Conclusions:

  • The studied system demonstrates many-body localization despite long-range interactions.
  • This work presents a model for MBL in the presence of nonconfining, long-range interactions.