Unquestionable Bell theorem for interwoven frustrated down conversion processes
arXiv:2508.19207 · doi:10.1103/h2l1-fcz9
Abstract
Interwoven frustrated parametric down conversion (PDC) processes produce interference effects based on path identity [Phys. Rev. Lett. 118, 080401 (2017)]. In this letter we show Bell nonclassicality of the processes: a proper violation of the Clauser-Horne inequality when the local measurements are controlled by on-off switching of the final local PDC processes. Such a non-standard approach is needed because if only the local phase shifts are used for the measurement settings, as done in the experiment reported in Sci. Adv. 11, 1794 (2025), there exists a local realistic model of the interference, which we present in this letter. Nevertheless, the reported destructive interference is deep enough to violate the inequality when using on-off switching, so our result establishes a firm footing for non-classicality of the new interferometry, in both theory and experiment. The on-off approach to Bell analysis of path-identity-based interference forms a new platform for seeking new highly counterintuitive quantum phenomena.
10 pages, 4 figures
References in corpus (11)
- Loopholes in Bell Inequality Tests of Local Realism
- Entanglement by Path Identity
- Two-photon Franson-type experiments and local realism
- Quantum Indistinguishability by Path Identity: The awakening of a sleeping beauty
- Multiphoton non-local quantum interference controlled by an undetected photon
- Tuning between photon-number and quadrature measurements with weak-field homodyne detection
- Can single photon excitation of two spatially separated modes lead to a violation of Bell inequality via homodyne measurements?
- Energy-time entanglement, Elements of Reality, and Local Realism
- On detecting violation of local realism with photon-number resolving weak-field homodyne measurements
- Optimal interferometry for Bellnonclassicality by a vacuumonephoton qubit
- Violation of Bell Inequality with Unentangled Photons