We demonstrate residual dispersion and optical signal-to-noise ratio monitoring of optical data via slow-light enhanced third harmonic generation in dispersion engineered 2D silicon photonic crystal waveguides, at data rates up to 640Gb/s
We experimentally investigate the slow light enhancement of nonlinear effects such as self-phase mod...
We experimentally investigate the slow light enhancement of nonlinear effects such as self-phase mod...
We demonstrate optical performance monitoring of in-band OSNR in 40Gbit/s Return-to-Zero signals via...
We show that slow light is capable of enhancing nonlinear optical processes for ultra-high bandwidth...
We demonstrate optical performance monitoring of in-band optical signal to noise ratio (OSNR) and re...
We demonstrate how nonlinear optical phenomena are enhanced by slow light in dispersion engineered 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 report optical performance monitoring via slow-light enhanced third harmonic generation in a 2D s...
We report all-optical in-band OSNR monitoring at 160Gb/s via slow-light enhanced third harmonic gene...
We report all-optical in-band OSNR monitoring at 160Gb/s via slow-light enhanced third harmonic gene...
We demonstrate optical performance monitoring of in-band optical signal to noise ratio (OSNR) and re...
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...
Slow light has attracted significant interest recently as a potential solution for optical delay lin...
We experimentally investigate the slow light enhancement of nonlinear effects such as self-phase mod...
We experimentally investigate the slow light enhancement of nonlinear effects such as self-phase mod...
We demonstrate optical performance monitoring of in-band OSNR in 40Gbit/s Return-to-Zero signals via...
We show that slow light is capable of enhancing nonlinear optical processes for ultra-high bandwidth...
We demonstrate optical performance monitoring of in-band optical signal to noise ratio (OSNR) and re...
We demonstrate how nonlinear optical phenomena are enhanced by slow light in dispersion engineered 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 report optical performance monitoring via slow-light enhanced third harmonic generation in a 2D s...
We report all-optical in-band OSNR monitoring at 160Gb/s via slow-light enhanced third harmonic gene...
We report all-optical in-band OSNR monitoring at 160Gb/s via slow-light enhanced third harmonic gene...
We demonstrate optical performance monitoring of in-band optical signal to noise ratio (OSNR) and re...
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...
Slow light has attracted significant interest recently as a potential solution for optical delay lin...
We experimentally investigate the slow light enhancement of nonlinear effects such as self-phase mod...
We experimentally investigate the slow light enhancement of nonlinear effects such as self-phase mod...
We demonstrate optical performance monitoring of in-band OSNR in 40Gbit/s Return-to-Zero signals via...