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Signatures of self-trapping in the driven-dissipative Bose-Hubbard dimer

  • International School of Advanced Studies
  • International School for Advanced Studies (SISSA/ISAS)
  • Collège de France

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

Résumé

We investigate signatures of a self-trapping transition in the driven-dissipative Bose Hubbard dimer, in presence of incoherent pump and single-particle losses. For fully symmetric couplings the stationary state density matrix is independent of any Hamiltonian parameter, and cannot therefore capture the competition between hopping-induced delocalization and the interaction-dominated self-trapping regime. We focus instead on the exact quantum dynamics of the particle imbalance after the system is prepared in a variety of initial states, and on the frequency-resolved spectral properties of the steady state, as encoded in the single-particle Green's functions. We find clear signatures of a localization-delocalization crossover as a function of hopping to interaction ratio. We further show that a finite a pump-loss asymmetry restores a delocalization crossover in the steady-state imbalance and leads to a finite intra-dimer dissipation.

langue originaleAnglais
Numéro d'article063056
journalNew Journal of Physics
Volume23
Numéro de publication6
Les DOIs
étatPublié - 1 juin 2021
Modification externeOui

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