DocumentCode :
751452
Title :
Broadband SBS Slow Light in an Optical Fiber
Author :
Zhu, Zhaoming ; Dawes, Andrew M C ; Gauthier, Daniel J. ; Zhang, Lin ; Willner, Alan E.
Author_Institution :
Dept. of Phys., Duke Univ., Durham, NH
Volume :
25
Issue :
1
fYear :
2007
Firstpage :
201
Lastpage :
206
Abstract :
In this paper, we investigate slow light via stimulated Brillouin scattering (SBS) in a room temperature optical fiber that is pumped by a spectrally broadened laser. Broadening the spectrum of the pump field increases the linewidth Deltaomegap of the Stokes amplifying resonance, thereby increasing the slow-light bandwidth. One physical bandwidth limitation occurs when the linewidth becomes several times larger than the Brillouin frequency shift OmegaB so that the anti-Stokes absorbing resonance substantially cancels out the Stokes amplifying resonance and, hence, the slow-light effect. We find that partial overlap of the Stokes and anti-Stokes resonances can actually lead to an enhancement of the slow-light delay-bandwidth product when Deltaomegapsime1.3OmegaB. Using this general approach, we increase the Brillouin slow-light bandwidth to over 12 GHz from its nominal linewidth of ~30 MHz obtained for monochromatic pumping. We controllably delay 75-ps-long pulses by up to 47 ps and study the data-pattern dependence of the broadband SBS slow-light system
Keywords :
delays; optical fibres; optical pumping; spectral line broadening; spectral line shift; stimulated Brillouin scattering; 293 to 298 K; 47 ps; 75 ps; Brillouin frequency shift; SBS slow-light system; Stokes amplifying resonance; Stokes resonance; antiStokes absorbing resonance; antiStokes resonance; broadband stimulated Brillouin scattering; data-pattern dependence; monochromatic pumping; optical fiber; optical pumping; picosecond pulse delay; room temperature optical fiber; slow-light delay-bandwidth product; slow-light effect; spectrally broadened laser; spectrum broadening; Bandwidth; Brillouin scattering; Delay; Fiber lasers; Laser excitation; Laser theory; Optical fibers; Resonance; Slow light; Temperature; Optical fiber; Q-penalty; pulse propagation; slow light; stimulated Brillouin scattering (SBS);
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2006.887188
Filename :
4137625
Link To Document :
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