Author:
Amtmann Christoph,Lammegger Roland,Betzler Alexander,Agú Martín,Ellmeier Michaela,Hagen Christian,Jernej Irmgard,Magnes Werner,Pollinger Andreas,Ernst Wolfgang E.
Abstract
AbstractThis paper discusses various frequency modulation and intensity modulation capabilities within a sample of direct laser current modulated identical vertical cavity surface emitting laser diodes. The presented analysis is based on measurements of the spectral amplitudes as a function of the applied modulation power at a constant modulation frequency of 3.517 GHz. Their evaluation by Bessel function fits produces the three modulation parameters: frequency modulation index, intensity modulation index (via the $$\alpha$$
α
parameter) and the side band asymmetry of the first order side bands. The variation of the laser diode’s modulation capability is discussed. It is found that the individual laser diodes show a significant variations in their modulation capabilities. Thus an experimental preselection of the laser diode is required to find laser diodes which are suitable as a light source for atomic vapour applications, with special emphasis on a coherent population trapping-based scalar magnetometers.
Funder
Österreichische Forschungsförderungsgesellschaft
European Space Agency
Graz University of Technology, Institute of Experimental Physics, Austria
Austrian Academy of Sciences, Space Research Institute, Austria
Graz University of Technology
Publisher
Springer Science and Business Media LLC
Subject
General Physics and Astronomy,Physics and Astronomy (miscellaneous),General Engineering
Cited by
1 articles.
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