Scalable quantum simulation of pulsed entanglement and Einstein-Podolsky-Rosen steering in optomechanics
arXiv:1312.6474 · doi:10.1103/PhysRevA.90.043805
Abstract
We demonstrate a complete, probabilistic quantum dynamical simulation of the standard nonlinear Hamiltonian of optomechanics, including decoherence at finite temperatures. Robust entanglement of an optical pulse with the oscillator is predicted, as well as strong quantum steering between the optical and mechanical systems. Importantly, our probabilistic quantum simulation method uses the positive-P technique, which is scalable to large Hilbert spaces.
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Cited by in corpus (28)
- Experimental quantification of asymmetric Einstein-Podolsky-Rosen steering
- Quantum fidelity measures for mixed states
- Classifying directional Gaussian quantum entanglement, EPR steering and discord
- Steady-state one-way Einstein-Podolsky-Rosen steering in optomechanical interfaces
- Decoherence of Einstein-Podolsky-Rosen steering
- Phase control of entanglement and quantum steering in a three-mode optomechanical system
- Pulsed entanglement of two optomechanical oscillators
- Entanglement optimization of filtered output fields in cavity optomechanics
- Optimal quantum parameter estimation in a pulsed quantum optomechanical system
- Controlling Stationary One-Way Steering via Thermal Effects in Optomechanics
- The influence of Unruh effect on quantum steering for accelerated two-level detectors with different measurements
- Creation, storage and retrieval of an optomechanical cat state
- Optomechanical Entanglement under Pulse Drive
- Chirality-induced one-way quantum steering between two waveguide-mediated ferrimagnetic microspheres
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- Quantifying the mesoscopic nature of the Einstein-Podolsky-Rosen nonlocality
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- Multi-time correlations in the positive-P, Q, and doubled phase-space representations
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- Mesoscopic and macroscopic quantum correlations in photonic, atomic and optomechanical systems
- Entanglement engineering of optomechanical systems by reinforcement learning
- Einstein-Podolsky-Rosen-like separability indicators for two-mode Gaussian states
- Dissipative generation of significant amount of photon-phonon asymmetric steering in magnomechanical interfaces
- Matrix phase-space representations for gaussian boson sampling
- Creation of bipartite steering correlations by a fast damped auxiliary mode
- Bayesian optimization of non-classical optomechanical correlations