DocumentCode :
2715223
Title :
Highly nonlinear Chalcogenide waveguide devices for ultra-fast all-optical signal processing
Author :
Pelusi, M.D. ; Luan, F. ; Mägi, E.C. ; Lamont, M.R.E. ; Moss, D. ; Eggleton, B.J. ; Madden, S. ; Choi, D.-Y. ; Bulla, D.A.P. ; Luther-Davies, B.
Author_Institution :
Center for Ultrahigh bandwidth Devices for Opt. Syst. (CUDOS), Univ. of Sydney, Sydney, NSW
fYear :
2008
fDate :
8-11 Dec. 2008
Firstpage :
1
Lastpage :
4
Abstract :
A review of the development and applications of compact highly nonlinear Chalcogenide waveguides for ultra-fast all-optical signal processing is presented. We demonstrate the extreme tapering of a highly nonlinear As2S3 fiber to further increase its nonlinearity by more than an order of magnitude thereby enabling time-division demultiplexing of a 160 Gb/s signal by four-wave mixing (FWM) with significantly lower optical powers. The tight mode confinement at such small fiber diameters also enhances the waveguiding dispersion to reduce the total dispersion for more broadband phase-matched FWM. We also present results on a low loss serpentine shaped rib waveguide of 22.5 cm length etched from a thin film of As2S3, that enables wavelength conversion of an 80 Gb/s signal by cross phase modulation, highlighting the potential for such high-speed signal processing to be performed in compact photonic chip circuits.
Keywords :
arsenic compounds; chalcogenide glasses; high-speed optical techniques; integrated optoelectronics; multiwave mixing; optical communication equipment; optical fibre communication; optical fibre dispersion; optical fibre losses; optical films; optical glass; optical information processing; optical modulation; optical phase matching; optical wavelength conversion; phase modulation; rib waveguides; time division multiplexing; As2S3; bit rate 160 Gbit/s; bit rate 80 Gbit/s; cross phase modulation; four-wave mixing; high-speed optical communication; highly nonlinear fiber; nonlinear chalcogenide waveguide device; optical glass; optical loss; optical power; optical thin film; phase-matched FWM; photonic chip circuit; serpentine shaped rib waveguide; size 22.5 cm; tight mode confinement; time-division demultiplexing; ultra-fast all-optical signal processing; waveguide dispersion; wavelength conversion; Demultiplexing; Fiber nonlinear optics; Four-wave mixing; High speed optical techniques; Optical fiber devices; Optical films; Optical waveguides; Optical wavelength conversion; Signal processing; Ultraviolet sources;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
PhotonicsGlobal@Singapore, 2008. IPGC 2008. IEEE
Conference_Location :
Singapore
Print_ISBN :
978-1-4244-3901-0
Electronic_ISBN :
978-1-4244-2906-6
Type :
conf
DOI :
10.1109/IPGC.2008.4781459
Filename :
4781459
Link To Document :
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