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Arbitrary femtosecond optical pulse shaping with a liquid crystal spatial light modulator

Authors :
Sangwoo Lee
Mohsen Kavehrad
Belal Hamzeh
Matthew Royal
Source :
SPIE Proceedings.
Publication Year :
2006
Publisher :
SPIE, 2006.

Abstract

Free space optical (FSO) communications technology has potential applications in the military sector to provide a secure, high speed communication channel, and in the civilian sect or as a “last mile” carrier solution. It was proposed by other researchers that a multi-rate communication system that utilizes Meyer wavelets would achieve the greatest bandwidth and highest reliability possible for an FSO system [1]. In order to generate Meyer wavelets from femtosecond laser pulses, filtering must be performed optically to produce the desired pulse sh ape. One of the simplest ways to produce an arbitrary pulse shape from a laser pulse is with a tunable liquid-crystal spatial light modulator (LC-SLM) in a zero-dispersion pulse compressi on system. The simplest approach to determine the correct mask pattern for an LC-SLM is to utilize adaptive, global optimization methods. Since it takes several milliseconds to adjust the attributes of each pixel of an LC-SLM and there are typically over one-thousand pixels, it is important to determine the fastest algorithm for determining the optimum mask pattern. Several global optimization methods, including simulated annealing, exhaustive search, and random search, a hybrid of the other two algorithms, were characterized. It was found that exhaustive search can be used to form waveforms with ne gligible inaccuracies at rates of about 5 times faster than simulated annealing and about 3 times faster than random search, but that simulated annealing provides the highest accuracy. However, the difference in accuracy be tween all of these algorithms is less than 10

Details

ISSN :
0277786X
Database :
OpenAIRE
Journal :
SPIE Proceedings
Accession number :
edsair.doi...........b8d129c1aac25d2768cc934e4f7a60e9
Full Text :
https://doi.org/10.1117/12.685638