most citedAll-optical signal processing platforms for CMOS compatible integrated nonlinear optics

1.8k citations · 4.6k across the 17 of their papers we have counts for

collaborators

8 papers

physics.optics2015

Hydex Glass: a CMOS Compatible Platform for Integrated Waveguide Structures for Nonlinear Optics

David Duchesne, Marcello Ferrera, Luca Razzari +4

Integrated photonic technologies are rapidly becoming an important and fundamental milestone for wideband optical telecommunications. Future optical networks have several critical…

physics.optics201574 cited

Silicon ring resonator based wavelength conversion via FWM at 10 Gb/s for differential phase-shift keyed signals

F. Li, M. Pelusi, D-X. Xu +4

We demonstrate all-optical wavelength conversion at 10 Gb/s for differential phase-shift keyed (DPSK) data signals in the C-band, based on four-wave mixing (FWM) in a silicon ring…

physics.optics2015208 cited

Optical performance monitoring at 640Gb/s via slow-light in a silicon nanowire

B. Corcoran, C. Monat, M. Pelusi +6

We demonstrate optical performance monitoring of in-band optical signal to noise ratio (OSNR) and residual dispersion, at bit rates of 40Gb/s, 160Gb/s and 640Gb/s, using slow-light…

physics.optics2015150 cited

Silicon nanowire based exclusive-OR gate using nonlinear optics for 40Gb/s DPSK signals

F. Li, T. D. Vo, C. Husko +7

We demonstrate an all-optical XOR logic function for 40Gb/s differential phase-shift keyed (DPSK) data signals in the C-band, based on four-wave mixing (FWM) in a silicon nanowire.…

physics.optics2015

Hydex Glass and Amorphous Silicon for Integrated Nonlinear Optical Signal Processing

Roberto Morandotti, David Moss

Photonic integrated circuits that exploit nonlinear optics in order to generate and process signals all-optically have achieved performance far superior to that possible electronic…

physics.optics2014

Platforms for integrated nonlinear optics compatible with silicon integrated circuits

David J. Moss, Roberto Morandotti

Nonlinear photonic chips are capable of generating and processing signals all-optically with performance far superior to that possible electronically - particularly with respect to…