Slow-light enhanced correlated photon pair generation in a silicon photonic crystal waveguide

We report the generation of correlated photon pairs in the telecom C-band at room temperature from a dispersion-engineered silicon photonic crystal waveguide. The spontaneous four-wave mixing process producing the photon pairs is enhanced by slow-light propagation enabling an active device length of...

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Veröffentlicht in:Optics letters 2011-09, Vol.36 (17), p.3413-3415
Hauptverfasser: XIONG, C, MONAT, Christelle, EGGLETON, Benjamin J, CLARK, Alex S, GRILLET, Christian, MARSHALL, Graham D, STEEL, M. J, JUNTAO LI, O'FAOLAIN, Liam, KRAUSS, Thomas F, RARITY, John G
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Sprache:eng
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Zusammenfassung:We report the generation of correlated photon pairs in the telecom C-band at room temperature from a dispersion-engineered silicon photonic crystal waveguide. The spontaneous four-wave mixing process producing the photon pairs is enhanced by slow-light propagation enabling an active device length of less than 100 μm. With a coincidence to accidental ratio of 12.8 at a pair generation rate of 0.006 per pulse, this ultracompact photon pair source paves the way toward scalable quantum information processing realized on-chip.
ISSN:0146-9592
1539-4794
DOI:10.1364/ol.36.003413