Optics Letters · 2012 · 67 citations · 17 references
Waveguide DispersionPhotonicsPhotonic DeviceFour-wave-mixing Bragg ScatteringEngineeringWavelength ConversionOptical PropertiesMixed-signal Integrated CircuitPeak Conversion EfficiencyGuided-wave OpticPhotonic Integrated CircuitTunable Wavelength-conversionOptical CommunicationMicrowave PhotonicsOptoelectronicsPlanar Waveguide SensorSin_x Waveguides
Low-noise, tunable wavelength-conversion through nondegenerate four-wave mixing Bragg scattering in SiN(x) waveguides is experimentally demonstrated. Finite element method simulations of waveguide dispersion are used with the split-step Fourier method to predict device performance. Two 1550 nm wavelength band pulsed pumps are used to achieve tunable conversion of a 980 nm signal over a range of 5 nm with a peak conversion efficiency of ≈5%. The demonstrated Bragg scattering process is suitable for frequency conversion of quantum states of light.
17
Broad-band optical parametric gain on a silicon photonic chip
Mark A. Foster, Amy C. Turner, Jay E. Sharping et al. · Nature · 2006 · 938 citations
Spectral line-by-line pulse shaping of on-chip microresonator frequency combs
Fahmida Ferdous, Houxun Miao, Daniel E. Leaird et al. · Nature Photonics · 2011 · 500 citations · Full text