Configurable heralded two-photon Fock-states on a chip
Progress in integrated photonics enables the combination of several elementary functions on single substrates for the realization of advanced functionalized chips. We report a monolithic integrated quantum photonic realization on lithium niobate, where nonlinear optics and electro-optics properties...
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Veröffentlicht in: | Optics express 2021-01, Vol.29 (1), p.415-424 |
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creator | Hua, Xin Lunghi, Tommaso Doutre, Florent Vergyris, Panagiotis Sauder, Grégory Charlier, Pierrick Labonté, Laurent D’Auria, Virginia Martin, Anthony Tascu, Sorin De Micheli, Marc P. Tanzilli, Sébastien Alibart, Olivier |
description | Progress in integrated photonics enables the combination of several elementary functions on single substrates for the realization of advanced functionalized chips. We report a monolithic integrated quantum photonic realization on lithium niobate, where nonlinear optics and electro-optics properties have been harnessed simultaneously for generating heralded configurable, two-photon states. Taking advantage of a picosecond pump laser and telecom components, we demonstrate the production of various path-coded heralded two-photon states, showing 94% raw visibility for Hong-Ou-Mandel interference. The versatility and performance of such a highly integrated photonic entanglement source enable exploring more complex quantum information processing protocols finding application in communication, metrology and processing tasks. |
doi_str_mv | 10.1364/OE.403552 |
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subjects | Physics Quantum Physics |
title | Configurable heralded two-photon Fock-states on a chip |
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