DocumentCode
1450276
Title
10 Gb/s multiple wavelength, coherent short pulse source based on spectral carving of supercontinuum generated in fibers
Author
Boyraz, Ö ; Kim, J. ; Islam, M.N. ; Coppinger, F. ; Jalali, B.
Author_Institution
Dept. of Electr. Eng. & Comput. Sci., Michigan Univ., Ann Arbor, MI, USA
Volume
18
Issue
12
fYear
2000
fDate
12/1/2000 12:00:00 AM
Firstpage
2167
Lastpage
2175
Abstract
We demonstrate a high-power, multi-wavelength, short pulse source at 10 Gb/s based on spectral slicing of supercontinuum (SC) generated in short fibers. We show that short fiber SC can be used for dense wavelength division multiplexing applications because of its >7.9 dBm/nm power spectral density, 140 nm spectral bandwidth, and /spl plusmn/0.5 dB spectral uniformity over 40 mn. Pulse carving up to 60 nm away from the pump wavelength and CW generation by longitudinal mode carving indicates that the coherence of the SC is maintained. By using high nonlinearity fibers, the spectral bandwidth is increased to 250 nm, which can accommodate >600 wavelength channels with 50 GHz channel spacing and >6 Tb/s aggregate data rate. We also calculate the coherence degradation due to amplification of incoherent energy during the SC generation. Theoretical results show that the SC generation in short fibers has 13 dB higher signal-to-noise ratio (SNR) compared to the SC generated in long fiber.
Keywords
high-speed optical techniques; light coherence; light sources; optical fibre communication; optical noise; optical pumping; telecommunication channels; wavelength division multiplexing; 10 Gbit/s; 6 Tbit/s; GHz channel spacing; Gb/s multiple wavelength coherent short pulse source; Tb/s aggregate data rate; coherence degradation; dense wavelength division multiplexing applications; high nonlinearity fibers; incoherent energy; longitudinal mode carving; nm spectral bandwidth; pump wavelength; short fibers; signal-to-noise ratio; spectral bandwidth; spectral carving; spectral slicing; spectral uniformity; supercontinuum generation; wavelength channels; Aggregates; Bandwidth; Channel spacing; Coherence; Degradation; Pulse generation; Signal generators; Signal to noise ratio; Supercontinuum generation; Wavelength division multiplexing;
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/50.908829
Filename
908829
Link To Document