DocumentCode
1361433
Title
Characterization of the Excess Noise Conversion From Optical Relative Intensity Noise in the Photodetection of Mode-Locked Lasers for Microwave Signal Synthesis
Author
Wu, Kan ; Shum, Perry Ping ; Aditya, Sheel ; Ouyang, Chunmei ; Wong, Jia Haur ; Lam, Huy Quoc ; Lee, Kenneth Eng Kian
Author_Institution
Sch. of Electr. & Electron. Eng., Nanyang Technol. Univ., Singapore, Singapore
Volume
29
Issue
24
fYear
2011
Firstpage
3622
Lastpage
3631
Abstract
Excess noise converted from the optical relative intensity noise (RIN) has limited the noise performance in the microwave signal synthesis application for mode-locked lasers. In this paper, a method for detailed characterization of the excess noise conversion from the optical RIN to the electrical pulse width jitter (PWJ), electrical relative amplitude noise (RAN) and electrical phase noise in the photodetection of mode-locked lasers is proposed. With the measured noise conversion ratios, one can predict the electrical RAN and phase noise power spectral densities under different input optical powers. The effect of the pulse width and peak power of the incident optical pulses and the effect of the saturation power of the photodetectors are also investigated. The results are used to suggest guidelines for achieving low-noise photodetection for microwave signal synthesis application.
Keywords
jitter; laser mode locking; laser noise; microwave photonics; phase noise; photodetectors; signal synthesis; electrical phase noise; electrical pulse width jitter; electrical relative amplitude noise; excess noise conversion; low-noise photodetection; microwave signal synthesis; mode-locked lasers; optical powers; optical pulses; optical relative intensity noise; phase noise power spectral densities; saturation power; Laser noise; Masers; Noise measurement; Optical pulses; Optical variables measurement; Radio access networks; Intensity noise; microwave signal synthesis and mode-locked laser; phase noise; pulse width jitter;
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/JLT.2011.2173464
Filename
6060844
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