Experimental and theoretical investigations on the modulation capabilities of a sample of vertical cavity surface emitting laser diodes for atomic vapour applications

This 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 m...

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Veröffentlicht in:Applied physics. B, Lasers and optics Lasers and optics, 2023-02, Vol.129 (2), Article 31
Hauptverfasser: Amtmann, Christoph, Lammegger, Roland, Betzler, Alexander, Agú, Martín, Ellmeier, Michaela, Hagen, Christian, Jernej, Irmgard, Magnes, Werner, Pollinger, Andreas, Ernst, Wolfgang E.
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Sprache:eng
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Zusammenfassung:This 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 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.
ISSN:0946-2171
1432-0649
DOI:10.1007/s00340-023-07971-7