We report all-optical in-band OSNR monitoring at 160Gb/s via slow-light enhanced third harmonic generation in a 2D silicon photonic crystal waveguide, achieving better performance than quadratic methods
Slow light has attracted significant interest recently as a potential solution for optical delay lin...
We report visible (green) third-harmonic generation in silicon by launching near-infrared picosecond...
Abstract: We experimentally investigate the slow light enhancement of nonlinear effects such as self...
We report all-optical in-band OSNR monitoring at 160Gb/s via slow-light enhanced third harmonic gene...
We report optical performance monitoring via slow-light enhanced third harmonic generation in a 2D s...
We report optical performance monitoring via slow-light enhanced third harmonic generation in a 2D s...
We report optical performance monitoring via slow-light enhanced third harmonic generation in a 2D s...
We demonstrate optical performance monitoring of in-band OSNR in 40Gbit/s Return-to-Zero signals via...
We demonstrate optical performance monitoring of in-band optical signal to noise ratio (OSNR) and re...
We demonstrate residual dispersion and optical signal-to-noise ratio monitoring of optical data via ...
We show that slow light is capable of enhancing nonlinear optical processes for ultra-high bandwidth...
We report visible (green) third-harmonic generation in silicon by launching near-infrared picosecond...
Slow light has attracted significant interest recently as a potential solution for optical delay lin...
Slow light has attracted significant interest recently as a potential solution for optical delay lin...
We demonstrate how nonlinear optical phenomena are enhanced by slow light in dispersion engineered s...
Slow light has attracted significant interest recently as a potential solution for optical delay lin...
We report visible (green) third-harmonic generation in silicon by launching near-infrared picosecond...
Abstract: We experimentally investigate the slow light enhancement of nonlinear effects such as self...
We report all-optical in-band OSNR monitoring at 160Gb/s via slow-light enhanced third harmonic gene...
We report optical performance monitoring via slow-light enhanced third harmonic generation in a 2D s...
We report optical performance monitoring via slow-light enhanced third harmonic generation in a 2D s...
We report optical performance monitoring via slow-light enhanced third harmonic generation in a 2D s...
We demonstrate optical performance monitoring of in-band OSNR in 40Gbit/s Return-to-Zero signals via...
We demonstrate optical performance monitoring of in-band optical signal to noise ratio (OSNR) and re...
We demonstrate residual dispersion and optical signal-to-noise ratio monitoring of optical data via ...
We show that slow light is capable of enhancing nonlinear optical processes for ultra-high bandwidth...
We report visible (green) third-harmonic generation in silicon by launching near-infrared picosecond...
Slow light has attracted significant interest recently as a potential solution for optical delay lin...
Slow light has attracted significant interest recently as a potential solution for optical delay lin...
We demonstrate how nonlinear optical phenomena are enhanced by slow light in dispersion engineered s...
Slow light has attracted significant interest recently as a potential solution for optical delay lin...
We report visible (green) third-harmonic generation in silicon by launching near-infrared picosecond...
Abstract: We experimentally investigate the slow light enhancement of nonlinear effects such as self...