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hits: 187
1.
  • Integrated optofluidics: A ... Integrated optofluidics: A new river of light
    Monat, C; Domachuk, P; Eggleton, B. J Nature photonics, 200702, 2007-2-00, 20070201, 2007-02, Volume: 1, Issue: 2
    Journal Article
    Peer reviewed
    Open access

    The realization of miniaturized optofluidic platforms offers potential for achieving more functional and more compact devices. Such integrated systems bring fluid and light together and exploit their ...
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  • Green light emission in sil... Green light emission in silicon through slow-light enhanced third-harmonic generation in photonic-crystal waveguides
    Monat, C; Corcoran, B; Grillet, C ... Nature photonics, 04/2009, Volume: 3, Issue: 4
    Journal Article
    Peer reviewed
    Open access

    Slow light has attracted significant interest recently as a potential solution for optical delay lines and time-domain optical signal processing. Perhaps even more significant is the possibility of ...
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  • Amorphous silicon nanowires... Amorphous silicon nanowires combining high nonlinearity, FOM and optical stability
    Grillet, C; Carletti, L; Monat, C ... Optics express, 09/2012, Volume: 20, Issue: 20
    Journal Article
    Peer reviewed
    Open access

    We demonstrate optically stable amorphous silicon nanowires with both high nonlinear figure of merit (FOM) of ~5 and high nonlinearity Re(γ) = 1200W(-1)m(-1). We observe no degradation in these ...
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  • Nonlinear optical response ... Nonlinear optical response of low loss silicon germanium waveguides in the mid-infrared
    Carletti, L; Ma, P; Yu, Y ... Optics express, 04/2015, Volume: 23, Issue: 7
    Journal Article
    Peer reviewed
    Open access

    We have investigated the nonlinear optical response of low loss Si(0.6)Ge(0.4) / Si waveguides in the mid-infrared wavelength range from 3.25- 4.75μm using picosecond optical pulses. We observed and ...
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  • Dispersion engineering of s... Dispersion engineering of slow light photonic crystal waveguides using microfluidic infiltration
    Ebnali-Heidari, M; Grillet, C; Monat, C ... Optics express, 02/2009, Volume: 17, Issue: 3
    Journal Article
    Peer reviewed
    Open access

    We present a technique based on the selective liquid infiltration of photonic crystal (PhC) waveguides to produce very small dispersion slow light over a substantial bandwidth. We numerically ...
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  • Four-wave mixing in slow li... Four-wave mixing in slow light engineered silicon photonic crystal waveguides
    Monat, C; Ebnali-Heidari, M; Grillet, C ... Optics express, 10/2010, Volume: 18, Issue: 22
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    Peer reviewed
    Open access

    We experimentally investigate four-wave mixing (FWM) in short (80 μm) dispersion-engineered slow light silicon photonic crystal waveguides. The pump, probe and idler signals all lie in a 14 nm wide ...
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  • Optical signal processing o... Optical signal processing on a silicon chip at 640Gb/s using slow-light
    Corcoran, B; Monat, C; Pelusi, M ... Optics express, 2010-Apr-12, 2010-04-12, 20100412, Volume: 18, Issue: 8
    Journal Article
    Peer reviewed
    Open access

    We demonstrate optical performance monitoring of in-band optical signal to noise ratio (OSNR) and residual dispersion, at bit rates of 40Gb/s, 160Gb/s and 640Gb/s, using slow-light enhanced optical ...
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  • Reconfigurable photonic cry... Reconfigurable photonic crystal waveguides created by selective liquid infiltration
    Bedoya, A Casas; Domachuk, P; Grillet, C ... Optics express, 05/2012, Volume: 20, Issue: 10
    Journal Article
    Peer reviewed
    Open access

    We experimentally demonstrate reconfigurable photonic crystal waveguides created directly by infiltrating high refractive index (n≈2.01) liquids into selected air holes of a two-dimensional hexagonal ...
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  • Mid-infrared nonlinear opti... Mid-infrared nonlinear optical response of Si-Ge waveguides with ultra-short optical pulses
    Carletti, L; Sinobad, M; Ma, P ... Optics express, 12/2015, Volume: 23, Issue: 25
    Journal Article
    Peer reviewed
    Open access

    We characterize the nonlinear optical response of low loss Si(0.6)Ge(0.4) / Si waveguides in the mid-infrared between 3.3 μm and 4 μm using femtosecond optical pulses. We estimate the three and ...
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  • A proposal for enhancing fo... A proposal for enhancing four-wave mixing in slow light engineered photonic crystal waveguides and its application to optical regeneration
    Ebnali-Heidari, M; Monat, C; Grillet, C ... Optics express, 09/2009, Volume: 17, Issue: 20
    Journal Article
    Peer reviewed
    Open access

    In this paper, we investigate both analytically and numerically four-wave mixing (FWM) in short (80 microm) dispersion engineered slow light photonic crystal waveguides. We demonstrate that both a ...
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