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
Hauptverfasser: 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
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container_end_page 424
container_issue 1
container_start_page 415
container_title Optics express
container_volume 29
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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