Wave-Particle Duality Relation with a Quantum Which-Path Detector

Wang, Dongyang and Wu, Junjie and Ding, Jiangfang and Liu, Yingwen and Huang, Anqi and Yang, Xuejun (2021) Wave-Particle Duality Relation with a Quantum Which-Path Detector. Entropy, 23 (1). p. 122. ISSN 1099-4300

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Abstract

According to the relevant theories on duality relation, the summation of the extractable information of a quanton’s wave and particle properties, which are characterized by interference visibility V and path distinguishability D, respectively, is limited. However, this relation is violated upon quantum superposition between the wave-state and particle-state of the quanton, which is caused by the quantum beamsplitter (QBS). Along another line, recent studies have considered quantum coherence C in the l1-norm measure as a candidate for the wave property. In this study, we propose an interferometer with a quantum which-path detector (QWPD) and examine the generalized duality relation based on C. We find that this relationship still holds under such a circumstance, but the interference between these two properties causes the full-particle property to be observed when the QWPD system is partially present. Using a pair of polarization-entangled photons, we experimentally verify our analysis in the two-path case. This study extends the duality relation between coherence and path information to the quantum case and reveals the effect of quantum superposition on the duality relation.

Item Type: Article
Uncontrolled Keywords: Keywords: wave-particle duality; quantum coherence; path distinguishability; polarization- entangled photons
Subjects: STM Repository > Physics and Astronomy
Depositing User: Managing Editor
Date Deposited: 27 Apr 2023 04:45
Last Modified: 01 Jul 2024 06:25
URI: http://classical.goforpromo.com/id/eprint/430

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