Interference Visibility and Wave-Particle Duality in Multi-Path Interference
arXiv:1905.02223 · doi:10.1103/PhysRevA.100.042105
Abstract
Wave-particle duality in multi-path interference is fraught with issues despite substantial progress in recent years. It was experimentally shown that in certain specific conditions, getting path information in a multi-path experiment can actually increase the visibility of interference. As a result, it was argued that in multi-path interference experiments, visibility of interference and 'which-path' information are not always complementary observables. In the present work, a new wave-particle duality relation is presented, based on a sum of visibilities of interference from individual pairs of path. This relation is always respected, even in the kind of specific situations mentioned above. This sum of visibilities turns out to be related to a recently introduced measure of coherence. As one of the consequences, it provides a novel way of experimentally measuring coherence in a multi-path interference experiment. As another consequence, this relation suggests a simple way of measuring path-distinguishability in multi-path interference. In addition, it resolves several outstanding issues concerning wave-particle duality in multi-path interference.
4 pages. Published version
References in corpus (1)
Cited by in corpus (14)
- Quantifying quantum coherence via nonreal Kirkwood-Dirac quasiprobability
- Decoherence and Visibility Enhancement in Multi-Path Interference
- Experimental investigation of wave-particle duality relations in asymmetric beam interference
- Quantum information in neural systems
- Double Slit with an Einstein-Podolsky-Rosen Pair
- Characterization of Two-Particle Interference by Complementarity
- Quantum coherence of spatial photonic qudits: experimental measurement and path-marker analysis
- Quantum coherence with incomplete set of pointers and corresponding wave-particle duality
- Influence of polarization and the environment on wave-particle duality
- Robustness of interferometric complementarity under Decoherence
- The complementarity relations in a multi-path interferometer with quantum memory
- Delayed-choice quantum erasers and the Einstein-Podolsky-Rosen paradox
- Trace-distance-based complementarity relations in a multipath interferometer
- Identical damped harmonic oscillators described by coherent states