Generation of correlated photons in nanoscale silicon waveguides

.We experimentally study the generation of correlated pairs of photons through four-wave mixing (FWM) in embedded silicon waveguides. The waveguides, which are designed to exhibit anomalous group-velocity dispersion at wavelengths near 1555 nm, allow phase matched FWM and thus efficient pair-wise ge...

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Veröffentlicht in:Optics express 2006-12, Vol.14 (25), p.12388-12393
Hauptverfasser: Sharping, Jay E, Lee, Kim F, Foster, Mark A, Turner, Amy C, Schmidt, Bradley S, Lipson, Michal, Gaeta, Alexander L, Kumar, Prem
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Sprache:eng
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Zusammenfassung:.We experimentally study the generation of correlated pairs of photons through four-wave mixing (FWM) in embedded silicon waveguides. The waveguides, which are designed to exhibit anomalous group-velocity dispersion at wavelengths near 1555 nm, allow phase matched FWM and thus efficient pair-wise generation of non-degenerate signal and idler photons. Photon counting measurements yield a coincidence-to-accidental ratio (CAR) of around 25 for a signal (idler) photon production rate of about 0.05 per pulse. We characterize the variation in CAR as a function of pump power and pump-to-sideband wavelength detuning. These measurements represent a first step towards the development of tools for quantum information processing which are based on CMOS-compatible, silicon-on-insulator technology.
ISSN:1094-4087
1094-4087
DOI:10.1364/oe.14.012388