Proposal for the Measurement of Bell-like Correlations from Continuous Variables
arXiv:quant-ph/0006057 · doi:10.1103/PhysRevLett.85.2035
Abstract
We show theoretically that Bell-type correlations can be observed between continuous variable measurements performed on a parametric source. An auxiliary measurement, performed on the detection environment, negates the possibility of constructing a local realistic description of these correlations.
References in corpus (1)
Cited by in corpus (29)
- Quantum information with continuous variables
- Polarization squeezing and continuous-variable polarization entanglement
- Proposed Test of Quantum Nonlocality for Continuous Variables
- Convex resource theory of non-Gaussianity
- Experimental demonstration of continuous variable polarization entanglement
- Experimental Violation of Bell's Inequality in Spatial-Parity Space
- Radiation Pressure Induced Einstein-Podolsky-Rosen Paradox
- Stokes operator squeezed continuous variable polarization states
- Experimentally realizable characterizations of continuous variable Gaussian states
- Violation of Bell-CHSH inequality using imperfect photodetectors with optical hybrid states
- Violation of Bells inequality using continuous variable measurements
- Biased EPR entanglement and its application to teleportation
- Bell correlations in a split two-mode-squeezed Bose-Einstein condensate
- Homodyne measurement of average photon number
- Unitary transformations for testing Bell inequalities
- Qubits from Number States and Bell Inequalities for Number Measurements
- Coherent analysis of quantum optical sideband modes
- Violations of Bell's inequality for Gaussian states with homodyne detection and nonlinear interactions
- Multiplexed communication over a high-speed quantum channel
- Continuous variable polarization entanglement, experiment and analysis
- Bell Inequalities in Phase Space and their Violation in Quantum Mechanics
- Demonstrating various quantum effects with two entangled laser beams
- Mesoscopic and macroscopic quantum correlations in photonic, atomic and optomechanical systems
- Motional entanglement of remote optically levitated nanoparticles
- Photon number discrimination without a photon counter and its application to reconstructing non-Gaussian states
- Reconstruction of photon number conditioned states using phase randomized homodyne measurements
- Entanglement properties of a measurement-based entanglement distillation experiment
- Vacuum fluctuations and the conditional homodyne detection of squeezed light
- Validation of entanglement purification by continuous variable polarization