DocumentCode
1130196
Title
Synthesis of electrooptic modulators for amplitude modulation of light
Author
Ammann, E.O. ; Yarborough, J.M.
Author_Institution
Sylvania Electronic Systems, Mountain View, CA, USA
Volume
4
Issue
4
fYear
1968
fDate
4/1/1968 12:00:00 AM
Firstpage
209
Lastpage
221
Abstract
A technique is described for synthesizing electrooptic amplitude modulators having arbitrary modulation characteristics. The technique is an adaptation of the procedure of Ammann and Yarborough for synthesizing naturally birefringent networks. The desired amplitude-transmission versus applied-voltage function
of the modulator is written as an exponential series containing a finite number of terms. The resulting modulator consists of a series of stages between an input and output polarizer, with each stage consisting of an electrooptic element and optical compensator. The induced birefringence of the electrooptic medium is assumed to be directly proportional to the applied modulating voltage υ. The question of how
should be chosen is also investigated. Two cases are considered: 1) an amplitude modulator to be used with an envelope detector, and 2) an amplitude modulator to be used with a square-law detector. For each case, the ideal
and several methods of approximating it are given. It is found that the manner in which
is chosen is of great importance. Best results were obtained when the term coefficients (the Ci ) of
were chosen to directly optimize the modulator property (or properties) deemed most important. Modulator designs corresponding to several useful
are given in tabular form.
of the modulator is written as an exponential series containing a finite number of terms. The resulting modulator consists of a series of stages between an input and output polarizer, with each stage consisting of an electrooptic element and optical compensator. The induced birefringence of the electrooptic medium is assumed to be directly proportional to the applied modulating voltage υ. The question of how
should be chosen is also investigated. Two cases are considered: 1) an amplitude modulator to be used with an envelope detector, and 2) an amplitude modulator to be used with a square-law detector. For each case, the ideal
and several methods of approximating it are given. It is found that the manner in which
is chosen is of great importance. Best results were obtained when the term coefficients (the C
were chosen to directly optimize the modulator property (or properties) deemed most important. Modulator designs corresponding to several useful
are given in tabular form.Keywords
Amplitude modulation; Birefringence; Electrooptic modulators; Envelope detectors; Network synthesis; Optical materials; Optical modulation; Optical polarization; Transfer functions; Voltage;
fLanguage
English
Journal_Title
Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
0018-9197
Type
jour
DOI
10.1109/JQE.1968.1075068
Filename
1075068
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