DocumentCode :
1156748
Title :
Study of the excess noise associated with demodulation of ultra-short infrared pulses
Author :
Ivanov, Eugene N. ; Diddams, Scott A. ; Hollberg, Leo
Author_Institution :
Dept. of Phys., Western Australia Univ., Nedlands, WA, Australia
Volume :
52
Issue :
7
fYear :
2005
fDate :
7/1/2005 12:00:00 AM
Firstpage :
1068
Lastpage :
1074
Abstract :
The demodulation of ultra-short light pulses with photodetectors is accompanied by excess phase noise at the pulse repetition rate and harmonics in the spectrum of the photocurrent. The major contribution to this noise is power fluctuations of the detected pulse train that, if not compensated for, can seriously limit the stability of frequency transfer from optical to microwave domain. By making use of an infrared femtosecond laser, we measured the spectral density of the excess phase noise, as well as power-to-phase conversion for different types of InGaAs photodetectors. Noise measurements were performed with a novel type of dual-channel readout system using a fiber coupled beam splitter. Strong suppression of the excess phase noise was observed in both channels of the measurement system when the average power of the femtosecond pulse train was stabilized. The results of this study are important for the development of low-noise microwave sources derived from optical "clocks" and optical frequency synthesis.
Keywords :
demodulation; fluctuations; high-speed optical techniques; infrared sources; noise measurement; optical noise; phase noise; photodetectors; InGaAs photodetectors; dual-channel readout system; excess noise; femtosecond laser; femtosecond pulse train; fiber coupled beam splitter; frequency transfer stability; infrared laser; infrared pulses; light pulse demodulation; low-noise microwave sources; noise measurements; noise suppression; optical clocks; optical frequency synthesis; phase noise; photocurrent spectrum; photodetectors; power fluctuations; power-to-phase conversion; pulse harmonics; pulse repetition rate; spectral density; ultrashort light pulses; Demodulation; Noise measurement; Optical noise; Optical pulses; Phase measurement; Phase noise; Photoconductivity; Photodetectors; Pulse measurements; Ultrafast optics;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/TUFFC.2005.1503992
Filename :
1503992
Link To Document :
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