The Bose–Hubbard model with squeezed dissipation
journal contribution
posted on 2023-06-08, 22:50 authored by Fernando Quijandira, Uta Naether, Diego Porras, Juan Jose Garcia-Ripoli, David ZuecoThe stationary properties of the Bose–Hubbard model under squeezed dissipation are investigated. The dissipative model does not possess aU (1) symmetry but conserves parity. We find that = 0 always holds, so no symmetry breaking occurs. Without the onsite repulsion, the linear case is known to be critical. At the critical point the system freezes to an EPR state with infinite two mode entanglement. We show here that the correlations are rapidly destroyed whenever the repulsion is switched on. As we increase the latter, the system approaches a thermal state with an effective temperature defined in terms of the squeezing parameter in the dissipators. We characterize this transition by means of a Gutzwiller ansatz and the Gaussian Hartree–Fock–Bogoliubov approximation.
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Publication status
- Published
File Version
- Accepted version
Journal
Journal of Physics B: Atomic, Molecular and Optical PhysicsPublisher
Institute of PhysicsExternal DOI
Issue
5Volume
48Department affiliated with
- Physics and Astronomy Publications
Full text available
- Yes
Peer reviewed?
- Yes
Legacy Posted Date
2015-10-19First Open Access (FOA) Date
2016-02-01First Compliant Deposit (FCD) Date
2015-10-16Usage metrics
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