DocumentCode
1166491
Title
Experimental Demonstrations of All-Optical Phase-Multiplexing Using FWM-Based Phase Interleaving in Silica and Bismuth-Oxide HNLFs
Author
Lu, Guo-Wei ; Abedin, Kazi Sarwar ; Miyazaki, Tetsuya
Author_Institution
Nat. Inst. of Inf. & Commun. Technol., Tokyo
Volume
27
Issue
4
fYear
2009
Firstpage
409
Lastpage
416
Abstract
We propose an all-optical phase-interleaving technology based on dual-pump four-wave mixing (FWM) in highly nonlinear fiber (HNLF). The proposed all-optical phase-interleaving technology is applied in an all-optical phase-multiplexing scheme to successfully phase-multiplex 2times or 3 times 10-Gb/s DPSK-WDM signals to a 20- or 30-Gb/s DPSK in non-return-to-zero (NRZ) formats. The proposed all-optical phase multiplexing scheme is demonstrated using dual-pump FWM in highly nonlinear silica and bismuth fibers. In contrast with optical time-division multiplexing technology, the proposed all-optical phase-multiplexing technology does not require pulse-carving, thus offering a high spectral-efficiency. Differential precoder for each input tributary is operated independently, and no additional encoder or postcoder is required to recover the original data after demodulation on the receiver side.
Keywords
bismuth compounds; demodulation; differential phase shift keying; multiwave mixing; optical fibre communication; optical information processing; optical modulation; silicon compounds; time division multiplexing; wavelength division multiplexing; Bi2O3; DPSKsignal; FWM; HNLF; SiO2; WDM signal; all-optical phase-interleaving technology; all-optical phase-multiplexing technology; bismuth fiber; bit rate 10 Gbit/s; bit rate 20 Gbit/s; bit rate 30 Gbit/s; differential precoder; dual-pump four-wave mixing; highly nonlinear fiber; nonreturn-to-zero format; optical time-division multiplexing; pulse-carving; Bismuth; Differential quadrature phase shift keying; Fiber nonlinear optics; Four-wave mixing; Interleaved codes; Nonlinear optics; Optical mixing; Optical receivers; Optical signal processing; Silicon compounds; All-optical signal processing; four-wave mixing (FWM); multiplexing; phase modulation;
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/JLT.2008.928962
Filename
4785433
Link To Document