Publication | Open Access
Quantum optomechanics in the bistable regime
94
Citations
30
References
2011
Year
Quantum ScienceEngineeringQuantum ComputingPhysicsCovariance Matrix FormalismNatural SciencesMany-body Quantum PhysicMeasurement ProblemApplied PhysicsQuantum Field TheoryOptomechanical SystemQuantum Mechanical PropertyQuantum CommunicationOptomechanicsQuantum EntanglementBistable RegimeSimplest Optomechanical SystemQuantum Decoherence
We study the simplest optomechanical system with a focus on the bistable regime. The covariance matrix formalism allows us to study both cooling and entanglement in a unified framework. We identify two key factors governing entanglement; namely, the bistability parameter (i.e., the distance from the end of a stable branch in the bistable regime) and the effective detuning, and we describe the optimum regime where entanglement is greatest. We also show that, in general, entanglement is a nonmonotonic function of optomechanical coupling. This is especially important in understanding the optomechanical entanglement of the second stable branch.
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