We demonstrate experimentally all-optical switching on a silicon chip at telecom wavelengths. The switching device comprises a compact ring resonator formed by horizontal silicon slot waveguides filled with highly nonlinear silicon nanocrystals in silica. When pumping at power levels about 100 mW using 10 ps pulses, more than 50% modulation depth is observed at the switch output. The switch performs about I order of magnitude faster than previous approaches on silicon and is fully fabricated using complementary metal oxide semiconductor technologies
The outlook on Optical Interconnects replacing Metal Interconnects on ICs is promising. However some...
We report on the experimental demonstration of ultrafast all-optical switching and wavelength down-c...
We report on the experimental demonstration of ultrafast all-optical switching and wavelength down-c...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...
textElectronic microchips have now firmly plateaued in switching speed. A promising solution for inc...
textElectronic microchips have now firmly plateaued in switching speed. A promising solution for inc...
We demonstrate a silicon optical switch that can reroute optical signals within a switching time of ...
In this work, we report on experimental demonstration of all-optical switching in a silicon-on-insul...
In this work, we report on experimental demonstration of all-optical switching in a silicon-on-insul...
We report on experimental demonstration of all-optical switching in a silicon-on-insulator photonic ...
We present new results on ultrafast alloptical wavelength conversion in Silicon-on-Insulator wavegui...
We propose a theoretical model of 1×2 all-optical switching in a silicon nano-waveguide ring resonat...
On-chip-triggered all-optical switching is a key component of ultrahigh-speed and ultrawide-band inf...
We have successfully demonstrated all-optical wavelength conversion of a 640-Gbit/s line-rate return...
All-optical switching with a very low power is demonstrated on photonic crystal wire nanocavities on...
The outlook on Optical Interconnects replacing Metal Interconnects on ICs is promising. However some...
We report on the experimental demonstration of ultrafast all-optical switching and wavelength down-c...
We report on the experimental demonstration of ultrafast all-optical switching and wavelength down-c...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...
textElectronic microchips have now firmly plateaued in switching speed. A promising solution for inc...
textElectronic microchips have now firmly plateaued in switching speed. A promising solution for inc...
We demonstrate a silicon optical switch that can reroute optical signals within a switching time of ...
In this work, we report on experimental demonstration of all-optical switching in a silicon-on-insul...
In this work, we report on experimental demonstration of all-optical switching in a silicon-on-insul...
We report on experimental demonstration of all-optical switching in a silicon-on-insulator photonic ...
We present new results on ultrafast alloptical wavelength conversion in Silicon-on-Insulator wavegui...
We propose a theoretical model of 1×2 all-optical switching in a silicon nano-waveguide ring resonat...
On-chip-triggered all-optical switching is a key component of ultrahigh-speed and ultrawide-band inf...
We have successfully demonstrated all-optical wavelength conversion of a 640-Gbit/s line-rate return...
All-optical switching with a very low power is demonstrated on photonic crystal wire nanocavities on...
The outlook on Optical Interconnects replacing Metal Interconnects on ICs is promising. However some...
We report on the experimental demonstration of ultrafast all-optical switching and wavelength down-c...
We report on the experimental demonstration of ultrafast all-optical switching and wavelength down-c...