Circuit QED bright source for chiral entangled light based on dissipation
arXiv:1212.3623 · doi:10.1103/PhysRevLett.111.073602
Abstract
Based on a circuit QED qubit-cavity array a source of two-mode entangled microwave radiation is designed. Our scheme is rooted in the combination of external driving, collective phenomena and dissipation. On top of that the reflexion symmetry is broken via external driving permitting the appearance of chiral emission. Our findings go beyond the applications and are relevant for fundamental physics, since we show how to implement quantum lattice models exhibiting criticality driven by dissipation.
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- Inducing Non-Classical Lasing Via Periodic Drivings in Circuit Quantum Electrodynamics
- Hidden Frustrated Interactions and Quantum Annealing in Trapped Ion Spin-Phonon Chains
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- Kinetics of Many-Body Reservoir Engineering
- Laser from a Manybody Correlated Medium
- The Bose Hubbard model with squeezed dissipation
- Bose-Hubbard models with photon pairing in circuit-QED
- Topological phases of shaken quantum Ising lattices
- An algorithm for tailoring a quadratic lattice with a local squeezed reservoir to stabilize generic chiral states with non-local entanglement