Generating quadrature squeezed light with dissipative optomechanical coupling
arXiv:1504.05617 · doi:10.1103/PhysRevA.91.063815
Abstract
The recent demonstration of cooling of a macroscopic silicon nitride membrane based on dissipative coupling makes dissipatively coupled optomechanical systems as promising candidates for squeezing. We theoretically show that such a system in a cavity on resonance can yield good squeezing which is comparable to that produced by dispersive coupling. We also report the squeezing resulting from the combined effects of dispersive and dissipative couplings and thus the device can be operated in one regime or the other. We derive the maximal frequency and quadrature angles to observe squeezing for given optomechanical coupling strengths. We also discuss the effects of temperature on squeezing.
References in corpus (21)
- Sideband Cooling Micromechanical Motion to the Quantum Ground State
- Optomechanically induced transparency
- Electromagnetically Induced Transparency and Slow Light with Optomechanics
- Quantum Theory of Cavity-Assisted Sideband Cooling of Mechanical Motion
- Theory of ground state cooling of a mechanical oscillator using dynamical back-action
- Observation of strong coupling between a micromechanical resonator and an optical cavity field
- Circuit cavity electromechanics in the strong coupling regime
- Non-Reciprocal Brillouin Scattering Induced Transparency
- Brillouin scattering induced transparency and non-reciprocal light storage
- Back-action evasion and squeezing of a mechanical resonator using a cavity detector
- Steady-state Mechanical Squeezing in an Optomechanical System via Duffing Nonlinearity
- Quantum Noise Interference and Back-action Cooling in Cavity Nanomechanics
- Two-mode squeezed states in cavity optomechanics via engineering of a single reservoir
- Cavity-assisted squeezing of a mechanical oscillator
- Dissipative and Dispersive Optomechanics in a Nanocavity Torque Sensor
- Observation of generalized optomechanical coupling and cooling on cavity resonance
- Dissipative optomechanical squeezing of light
- Strong squeezing and robust entanglement in cavity electromechanics
- Generating EPR beams in a cavity optomechanical system
- Classical non-Gaussian state preparation through squeezing in an opto-electromechanical resonator
- Strong squeezing via phonon mediated spontaneous generation of photon pairs
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- Multi-path photon-phonon converter in optomechanical system at single-quantum level
- Enhancement of entanglement in distant micromechanical mirrors using parametric interactions
- Mechanical cooling in the bistable regime of a dissipative optomechanical cavity with a Kerr medium
- Asymmetry-Based Quantum Backaction Suppression in Quadratic Optomechanics
- Third-order Optical Nonlinearity in Two-dimensional Transition Metal Dichalcogenides
- Resonance fluorescence of two asymmetrically pumped and coupled two-level systems
- Stable Optical Rigidity Based on Dissipative Coupling
- Cavity-assisted enhanced and dephasing immune squeezing in the resonance fluorescence of a single quantum dot
- Producing entangled photon pairs and quantum squeezed states in plasmas
- Squeezing quadrature rotation in the acoustic band via optomechanics
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