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Entanglement, complementarity, and vacuum fields in spontaneous\n parametric down-conversion

2017/05/17 by Ralf Menzel, Menzel, Ralf, Axel Heuer +3 · 1 citation
Computer Science · Mathematics · Physics and Astronomy · #Coincidence #Coincidence counting #Complementarity (molecular biology) #Mathematics #Parametric statistics #Photon #Physics #Quantum #Quantum Information and Cryptography #Quantum Mechanics and Applications #Quantum entanglement #Quantum mechanics #Spectroscopy and Quantum Chemical Studies #Spontaneous parametric down-conversion #Statistical physics #Statistics #Vacuum state #quant-ph

paper · pdf · doi:10.48550/arxiv.1705.06030

published in arXiv (Cornell University) (Cornell University)

arxiv created 2017/05/17 · openalex publication_date 2017/05/17 · arxiv updated 2017/05/18 · openalex created_date 2022/10/02 · openalex updated_date 2026/07/28

Abstract

Using two crystals for spontaneous parametric down-conversion in a parallel\nsetup, we observe two-photon interference with high visibility. The high\nvisibility is consistent with complementarity and the absence of which-path\ninformation. The observations are explained as effects of entanglement or\nequivalently in terms of interfering probability amplitudes, and also by the\ncalculation of a second-order field correlation function in the Heisenberg\npicture. The latter approach brings out explicitly the role of the vacuum\nfields in the down-conversion at the crystals and in the photon coincidence\ncounting. For comparison we show that the Hong-Ou-Mandel dip can be explained\nby the same approach in which the role of the vacuum signal and idler fields,\nas opposed to entanglement involving vacuum states, is emphasized.\n

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