Optomechanical Entanglement under Pulse Drive
arXiv:1506.02452 · doi:10.1364/OE.23.024497
Abstract
We report a study of optomechanical entanglement under the drive of one or a series of laser pulses with arbitrary detuning and different pulse shapes. Because of the non-existence of system steady state under pulsed driving field, we adopt a different approach from the standard treatment to optomechanical entanglement. The situation of the entanglement evolution in high temperature is also discussed.
11 pages, 4 figures. Accepted version of Optics Express, some errors are corrected
References in corpus (17)
- Optomechanical entanglement between a movable mirror and a cavity field
- Quantum Theory of Cavity-Assisted Sideband Cooling of Mechanical Motion
- Theory of ground state cooling of a mechanical oscillator using dynamical back-action
- Cavity Optomechanics
- Large Quantum Superpositions and Interference of Massive Nanometer-Sized Objects
- Robust entanglement of a micromechanical resonator with output optical fields
- Creating and probing macroscoping entanglement with light
- Steady state entanglement in the mechanical vibrations of two dielectric membranes
- Bringing entanglement to the high temperature limit
- Review of cavity optomechanical cooling
- Entangling a nanomechanical resonator and a superconducting microwave cavity
- Two-photon dynamics in coherent Rydberg atomic ensemble
- Qantum theory of optomechanical cooling
- Scalable quantum simulation of pulsed entanglement and Einstein-Podolsky-Rosen steering in optomechanics
- Quantum noise effects with Kerr nonlinearity enhancement in coupled gain-loss waveguides
- Quantum Optomechanics beyond Linearization
- Generation of arbitrary symmetric entangled states with conditional linear optical coupling
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- Bayesian optimization of non-classical optomechanical correlations