A Comparison of Small Signal Modulation Parameter Extraction Techniques for Vertical-Cavity, Surface-Emitting Lasers

O'Brien, Christopher J., Majewski, M. L. and Rakic, A. D. (2006). A Comparison of Small Signal Modulation Parameter Extraction Techniques for Vertical-Cavity, Surface-Emitting Lasers. In: J. Modelski, 16th International Conference on Microwaves, Radar and Wireless Communications (MIKON-2006). 16th International Conference on Microwaves, Radar and Wireless Communcations (MIKON-2006), Krakow, Poland, (169-172). 22-26 May, 2006.

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Author O'Brien, Christopher J.
Majewski, M. L.
Rakic, A. D.
Title of paper A Comparison of Small Signal Modulation Parameter Extraction Techniques for Vertical-Cavity, Surface-Emitting Lasers
Conference name 16th International Conference on Microwaves, Radar and Wireless Communcations (MIKON-2006)
Conference location Krakow, Poland
Conference dates 22-26 May, 2006
Proceedings title 16th International Conference on Microwaves, Radar and Wireless Communications (MIKON-2006)
Place of Publication Warsaw, Poland
Publisher Telecommunications Research Institute (PIT)
Publication Year 2006
Sub-type Fully published paper
ISBN 83-906662-7-8
Editor J. Modelski
Volume 1
Issue 1
Start page 169
End page 172
Total pages 4
Collection year 2006
Language eng
Abstract/Summary The small signal modulation characteristics of a vertical-cavity, surface-emitting laser (VCSEL) are determined using three different measurements: relative intensity noise, frequency response, and high resolution optical spectra. The resonant and damping frequencies were measured, and related rate equation parameters were extracted; excellent agreement was found both between experiment and theory, and amongst the different measurement techniques. The results and procedures are compared, and the findings are presented below.
Subjects 240402 Quantum Optics and Lasers
E1
291702 Optical and Photonic Systems
671201 Integrated circuits and devices
Keyword VCSEL
relative intensity noise
RIN
relaxation resonance frequency
Q-Index Code E1

 
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Created: Tue, 21 Feb 2006, 10:00:00 EST by Christopher J O'Brien on behalf of School of Information Technol and Elec Engineering