Title :
Wide-band electrooptic intensity modulator frequency response measurement using an optical heterodyne down-conversion technique
Author :
Lam, Alfred K M ; Fairburn, Mark ; Jaeger, Nicolas A F
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of British Columbia, Vancouver, BC
Abstract :
This paper describes a novel system for measuring the frequency response of electrooptic intensity modulators at millimeter-wave frequencies. The system measures |S21| in decibels electrical. In it, the electrical input signal to the modulator is generated by heterodyning two tunable lasers. The output of the modulator is then down-converted to a microwave frequency at which the output is easily measured. Measurements have been made up to 78 GHz using a 55-GHz photodiode as the mixer for the two lasers. In addition, our system tracks any frequency variations in the outputs of the lasers. Our system can also measure the linear response of the modulator if it is operated in nonlinear regions since it can reject higher order harmonics, due to nonlinearities, generated in the modulator
Keywords :
electro-optical devices; frequency response; laser tuning; optical modulation; photodiodes; 55 GHz; frequency response measurement; high order harmonics; microwave frequency; millimeter wave frequencies; mixers; optical down-conversion; optical heterodyning; photodiodes; tunable lasers; wideband electrooptic intensity modulator; Electrooptic modulators; Frequency measurement; Frequency modulation; Frequency response; Intensity modulation; Masers; Millimeter wave measurements; Optical mixing; Optical modulation; Wideband; Electrooptic modulators; frequency response; harmonic rejection; optical communications; optical downconversion; optical heterodyning;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2005.860303