DocumentCode :
1495872
Title :
Ultrashort pulse reflection from fiber gratings: a numerical investigation
Author :
Chen, Lawrence R. ; Benjamin, Seldon D. ; Smith, Peter W E ; Sipe, J.E.
Author_Institution :
Dept. of Electr. & Comput. Eng., Toronto Univ., Ont., Canada
Volume :
15
Issue :
8
fYear :
1997
fDate :
8/1/1997 12:00:00 AM
Firstpage :
1503
Lastpage :
1512
Abstract :
We consider the linear reflection of ultrashort broadband pulses by uniform and nonuniform narrowband fiber gratings. We examine the effects of grating characteristics, including peak reflectivity, bandwidth, phase response (dispersion and chirp), and apodization on the reflection of such pulses from various gratings. A symmetric transform-limited 1-ps Gaussian pulse is assumed as the ultrashort broadband input to the gratings; the reflected pulses take on significantly different shapes and vary in duration. The prominent features observed are qualitatively explained in order to gain physical insight into the nature of the ultrashort pulse response and corresponding interaction. The results of this study indicate that there is the potential for a new class of applications, including temporal pulse shaping and novel devices for optical communications systems, by combining ultrashort broadband pulses with narrowband fiber gratings
Keywords :
diffraction gratings; high-speed optical techniques; optical fibre communication; optical fibre dispersion; optical fibre theory; optical fibres; reflectivity; chirp; dispersion; fiber gratings; grating characteristics; linear reflection; narrowband fiber gratings; nonuniform narrowband fiber gratings; numerical investigation; optical communications systems; peak reflectivity; phase response; reflected pulses; symmetric transform-limited ps Gaussian pulse; temporal pulse shaping; ultrashort broadband input; ultrashort broadband pulse; ultrashort broadband pulses; ultrashort pulse reflection; ultrashort pulse response; Bandwidth; Chirp; Dispersion; Fiber gratings; Narrowband; Optical fiber communication; Optical reflection; Pulse shaping methods; Reflectivity; Shape;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/50.618383
Filename :
618383
Link To Document :
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