Memory effect induced macroscopic-microscopic entanglement
arXiv:1606.03201 · doi:10.1103/PhysRevA.94.012334
Abstract
We study optomechanical entanglement between an optical cavity field and a movable mirror coupled to a non-Markovian environment. The non-Markovian quantum state diffusion (NMQSD) approach and the non-Markovian master equation are shown to be useful in investigating the entanglement generation between the cavity field and the movable mirror. The simple model presented in this paper demonstrates several interesting properties of optomechanical entanglement that are associated with environment memory effects. It is evident that the effective environment central frequency can be used to modulate the optomechanical entanglement. In addition, we show that the maximum entanglement may be achieved by properly choosing the effective detuning which is significantly dependent on the strength of the memory effect of the environment.
10 pages, 5 figures
References in corpus (16)
- Sideband Cooling Micromechanical Motion to the Quantum Ground State
- Optomechanical entanglement between a movable mirror and a cavity field
- Observation of strong coupling between a micromechanical resonator and an optical cavity field
- Single-photon Optomechanics
- Robust entanglement of a micromechanical resonator with output optical fields
- Dynamics of the entanglement between two oscillators in the same environment
- Exact Master Equation and Quantum Decoherence of Two Coupled Harmonic Oscillators in a General Environment
- Non-Markovian Quantum Trajectories Versus Master Equations: Finite Temperature Heat Bath
- Non-Markovian Relaxation of a Three-Level System: Quantum Trajectory Approach
- Laser noise in cavity-optomechanical cooling and thermometry
- Non-equilibrium Entanglement and Noise in Coupled Qubits
- Single-atom as a macroscopic entanglement source
- Exact non-Markovian master equations for multiple qubit systems: quantum trajectory approach
- Fermionic Stochastic Schrödinger Equation and Master Equation: An Open System Model
- Perturbation Methods for Non-Markovian Quantum State Diffusion Equation
- Quantum Brownian Motion of a Macroscopic Object in a General Environment
Cited by in corpus (13)
- Optomechanical Force Sensor in non-Markovian Regime
- Improve Microwave Quantum Illumination Via Optical Parametric Amplifier
- Optomechanical quadrature squeezing in the non-Markovian regime
- Noise assisted quantum coherence protection in hierarchical environment
- Dynamical Gaussian quantum steering in optomechanics
- Multi-path photon-phonon converter in optomechanical system at single-quantum level
- Optomechanical second-order sidebands and group delays in a spinning resonator with parametric amplifier and non-Markovian effects
- Optimal entanglement generation in optomechanical systems via Krotov control of covariance matrix dynamics
- Non-Markovian environment induced Schrödinger cat state transfer in an optical Newton's cradle
- Chaos in Optomechanical Systems coupled to a Non-Markovian environment
- Entanglement dynamics of an open moving-biparticle system driven by classical-field
- Measurement of the mechanical reservoir spectral density in optomechanical system
- Non-Markovian environment induced chaos in optomechanical system