Dynamic entanglement transfer in a double-cavity optomechanical system
arXiv:1502.04863 · doi:10.1103/PhysRevA.92.022301
Abstract
We give a theoretical study of a double-cavity system in which a mechanical resonator beam is coupled to two cavity modes on both sides through radiation pressures. The indirect coupling between the cavities via the resonator sets up a correlation in the optomechanical entanglements between the two cavities with the common resonator. This correlation initiates an entanglement transfer from the intracavity photon-phonon entanglements to an intercavity photon-photon entanglement. Using numerical solutions, we show two distinct regimes of the optomechanical system, in which the indirect entanglement either builds up and eventually saturates or undergoes a death-and-revival cycle, after a time lapse for initiating the cooperative motion of the left and right cavity modes.
7 pages
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- Fano profile in double cavity optomechanical system with harmonically bound mirrors
- Quantum correlations between two distant cavity QED systems coupled by a mechanical resonator
- Atom-driven multistability in an optomechanical cavity under broken PT-symmetry
- Synchronization of two cavity-coupled qubits measured by entanglement
- Distributed entanglement generation from asynchronously excited qubits