Is wave-particle objectivity compatible with determinism and locality?
arXiv:1211.0979 · doi:10.1038/ncomms5997
Abstract
Wave-particle duality, superposition and entanglement are among the most counterintuitive features of quantum theory. Their clash with our classical expectations motivated hidden-variable (HV) theories. With the emergence of quantum technologies we can test experimentally the predictions of quantum theory {\em versus} HV theories and put strong restrictions on their key assumptions. Here we study an entanglement-assisted version of the quantum delayed-choice experiment and show that the extension of HV to the controlling devices only exacerbates the contradiction. We compare HV theories that satisfy the conditions of objectivity (a property of photons being either particles or waves, but not both), determinism, and local independence of hidden variables with quantum mechanics. Any two of the above conditions are compatible with it. The conflict becomes manifest when all three conditions are imposed and persists for any non-zero value of entanglement. We propose an experiment to test our conclusions.
A published version. The logic is similar to the original version, but many changes were introduced
References in corpus (12)
- Experimental realization of Wheeler's delayed-choice GedankenExperiment
- Testing the limits of quantum mechanical superpositions
- A quantum delayed choice experiment
- Experimental interference of independent photons
- Entanglement-enabled delayed choice experiment
- High-fidelity entanglement swapping with fully independent sources
- NMR implementation of Quantum Delayed-Choice Experiment
- Experimental analysis of the quantum complementarity principle
- On Quantum Theory
- A Classification of Hidden-Variable Properties
- Revisiting Bohr's principle of complementarity using a quantum device
- Quantum control in foundational experiments
Cited by in corpus (16)
- Delayed-choice gedanken experiments and their realizations
- Causal modeling the delayed choice experiment
- Quantum wave-particle superposition in a delayed-choice experiment
- Experimental entanglement-assisted quantum delayed-choice experiment
- Post-Newtonian gravitational effects in quantum interferometry
- Device independent certification of a quantum delayed choice experiment
- Realization of a causal-modeled delayed-choice experiment using single photons
- A loophole-free Wheeler-delayed-choice experiment
- Classical model of delayed-choice quantum eraser
- Quantum control in foundational experiments
- Restrictions for the Causal Inferences in an Interferometric System
- Macroscopic delayed-choice and retrocausality: quantum eraser, Leggett-Garg and dimension witness tests with cat states
- Determinism, independence and objectivity are incompatible
- Controlling wave-particle duality with quantum entanglement
- Modified quantum delayed-choice experiment without quantum control
- Forward-backward stochastic simulations: Q-based model for measurement and Bell-nonlocality consistent with weak local realistic premises