The equations for Four-Wave-Mixing in a photonic crystal waveguide are derived accurately in the hypotesis of negligible nonlinear absorption. The dispersive nature of slow-light enhancement, the impact of Bloch mode reshaping in the nonlinear overlap integrals and the tensor nature of the third order polarization are therefore taken into account. Numerical calculations reveal substantial differences from simpler models, which increase with decreasing group velocity. We predict that the gain for a 1.3 mm long, un-optimized GaInP waveguide will exceed 10 dB if the pump power exceeds 1 W
We report highly efficient four wave mixing in a GaInP photonic crystal waveguide. Owing to its larg...
We report nonlinear measurements on 80μm silicon photonic crystal waveguides that are designed to su...
We discuss the optimization of photonic crystal waveguides for four-wave mixing applications, taking...
The equations for Four-Wave-Mixing in a photonic crystal waveguide are derived accurately in the hyp...
The linear and nonlinear properties of GaInP photonic crystal waveguides engineered for slow light a...
The self-, cross- and four-wave mixing coefficients are determined in photonic crystal waveguides sp...
We demonstrate continuous wave four-wave mixing in silicon photonic crystal waveguides of 396 mu m l...
Four wave mixing gain in slow light engineered GaInP photonic crystal waveguides is accurately deriv...
We present approximate analytical expressions for the estimation of the degenerate four-wave mixing ...
We show how slow-light enhanced four-wave mixing in dispersion engineered photonic crystal waveguide...
We experimentally investigate four-wave mixing (FWM) in short (80 mu m) dispersion-engineered slow l...
We report efficient four-wave mixing in dispersion engineered slow light silicon photonic crystal wa...
The physical principles behind the phenomenon of slow light in photonic crystal waveguides, as well ...
The role of slow wave propagation in nonlinear photonic crystal waveguides is presented. Large enhan...
We predict narrowband parametric amplification in dispersion-tailored photonic crystal waveguides ma...
We report highly efficient four wave mixing in a GaInP photonic crystal waveguide. Owing to its larg...
We report nonlinear measurements on 80μm silicon photonic crystal waveguides that are designed to su...
We discuss the optimization of photonic crystal waveguides for four-wave mixing applications, taking...
The equations for Four-Wave-Mixing in a photonic crystal waveguide are derived accurately in the hyp...
The linear and nonlinear properties of GaInP photonic crystal waveguides engineered for slow light a...
The self-, cross- and four-wave mixing coefficients are determined in photonic crystal waveguides sp...
We demonstrate continuous wave four-wave mixing in silicon photonic crystal waveguides of 396 mu m l...
Four wave mixing gain in slow light engineered GaInP photonic crystal waveguides is accurately deriv...
We present approximate analytical expressions for the estimation of the degenerate four-wave mixing ...
We show how slow-light enhanced four-wave mixing in dispersion engineered photonic crystal waveguide...
We experimentally investigate four-wave mixing (FWM) in short (80 mu m) dispersion-engineered slow l...
We report efficient four-wave mixing in dispersion engineered slow light silicon photonic crystal wa...
The physical principles behind the phenomenon of slow light in photonic crystal waveguides, as well ...
The role of slow wave propagation in nonlinear photonic crystal waveguides is presented. Large enhan...
We predict narrowband parametric amplification in dispersion-tailored photonic crystal waveguides ma...
We report highly efficient four wave mixing in a GaInP photonic crystal waveguide. Owing to its larg...
We report nonlinear measurements on 80μm silicon photonic crystal waveguides that are designed to su...
We discuss the optimization of photonic crystal waveguides for four-wave mixing applications, taking...