DocumentCode
1275457
Title
Slow Light Enhanced Nonlinear Optics in Silicon Photonic Crystal Waveguides
Author
Monat, Christelle ; Corcoran, Bill ; Pudo, Dominik ; Ebnali-Heidari, Majid ; Grillet, Christian ; Pelusi, Mark D. ; Moss, David J. ; Eggleton, Benjamin J. ; White, Thomas P. ; O´Faolain, Liam ; Krauss, Thomas F.
Author_Institution
Centre for Ultrahigh-Bandwidth Devices for Opt. Syst., Univ. of Sydney, Sydney, NSW, Australia
Volume
16
Issue
1
fYear
2010
Firstpage
344
Lastpage
356
Abstract
We present a summary of our recent experiments showing how various nonlinear phenomena are enhanced due to slow light in silicon photonic crystal waveguides. These nonlinear processes include self-phase modulation (SPM), two-photon absorption (TPA), free-carrier related effects, and third-harmonic generation, the last effect being associated with the emission of green visible light, an unexpected phenomenon in silicon. These demonstrations exploit photonic crystal waveguides engineered to support slow modes with a range of group velocities as low as c/50 and, more crucially, with significantly reduced dispersion. We discuss the potential of slow light in photonic crystals for realizing compact nonlinear devices operating at low powers. In particular, we consider the application of SPM to all-optical regeneration, and experimentally investigate an original approach, where enhanced TPA and free-carrier absorption are used for partial regeneration of a high-bit rate data stream (10 Gb/s).
Keywords
optical harmonic generation; optical waveguides; photonic crystals; self-phase modulation; slow light; two-photon processes; Si; all optical regeneration; bit rate 10 Gbit/s; free carrier related effects; green visible light emission; self phase modulation; silicon photonic crystal waveguides; slow light enhanced nonlinear optics; third harmonic generation; two photon absorption; Integrated optics; nonlinear optics; silicon; slow wave structures;
fLanguage
English
Journal_Title
Selected Topics in Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
1077-260X
Type
jour
DOI
10.1109/JSTQE.2009.2033019
Filename
5315790
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