Demonstration of universal contextuality through communication games free of both operational inequivalence and compatibility loopholes
arXiv:2403.09220 · doi:10.1364/OE.502723
Abstract
Universal contextuality is the leading notion of non-classicality even for single systems, showing its advantage as a more general quantum correlation than Bell non-locality, as well as preparation contextuality. However, a loophole-free experimental demonstration of universal contextuality at least requires that both operational inequivalence and compatibility loopholes are closed, which have never been simultaneously achieved to date. In our work, we experimentally test universal contextuality through (3,3) and (4,3) communication games, simultaneously restoring operational equivalence and circumventing the compatibility loophole. Our result exhibits the violation of universal non-contextuality bound by 97 standard deviations in (3,3) scenario, and 107 deviations in (4,3) scenario. Notably there are states which exhibit locality but reveal universal contextuality in both two scenarios. In addition, our result shows that universal contextuality is more general than preparation contextuality in (3,3) scenario, while equivalent to preparation contextuality in (4,3) scenario.
20 pages, 5 figures
References in corpus (12)
- Device-independent security of quantum cryptography against collective attacks
- A simple test for hidden variables in spin-1 system
- Experimentally testable state-independent quantum contextuality
- State-independent experimental test of quantum contextuality
- Experimental non-classicality of an indivisible quantum system
- Experimental test of quantum contextuality in neutron interferometry
- State-independent quantum contextuality with single photons
- Preparation contextuality powers parity-oblivious multiplexing
- Wigner function negativity and contextuality in quantum computation on rebits
- Universality of state-independent violation of correlation inequalities for noncontextual theories
- State-independent experimental tests of quantum contextuality in a three dimensional system
- Proposed experiment for testing quantum contextuality with neutrons