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Opt Express ; 19(13): 12172-9, 2011 Jun 20.
Article in English | MEDLINE | ID: mdl-21716454

ABSTRACT

We experimentally demonstrate four-wave-mixing (FWM)-based continuous wavelength conversion of optical differential-phase-shift-keyed (DPSK) signals with large wavelength conversion ranges as well as simultaneous wavelength conversion of dual-wavelength channels with mixed modulation formats in 1.1-cm-long dispersion-engineered silicon waveguides. We first validate up to 100-nm wavelength conversion range for 10-Gb/s DPSK signals, showcasing the capability to perform phase-preserving operations at high bit rates in chip-scale devices over wide conversion ranges. We further validate the wavelength conversion of dual-wavelength channels modulated with 10-Gb/s packetized phase-shift-keyed (PSK) and amplitude-shift-keyed (ASK) signals; demonstrate simultaneous operation on multiple channels with mixed formats in chip-scale devices. For both configurations, we measure the spectral and temporal responses and evaluate the performances using bit-error-rate (BER) measurements.


Subject(s)
Optical Devices , Optics and Photonics/instrumentation , Signal Processing, Computer-Assisted/instrumentation , Silicon/chemistry , Telecommunications/instrumentation , Equipment Design , Nonlinear Dynamics , Optics and Photonics/methods
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