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  4. Frequency stabilization of multimode diode lasers with fiber Bragg gratings
 
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2019
Conference Paper
Title

Frequency stabilization of multimode diode lasers with fiber Bragg gratings

Abstract
We present the frequency stabilization of a multimode diode laser single emitter at 1074.8 nm by use of fiber Bragg gratings in a 105/125 mm NA 0.22 fiber that is spliced to the output fiber of the diode laser. At 25°C, the spectral full width at half maximum decreases from 4.6 nm in the free-running configuration to 1.1 nm using an FBG with a reflectivity of R=0.07, the thermal drift decreases from 2.12 nm/W to 0.45 nm/W. The optical output power at 10 A with frequency stabilization is 6.6 W compared to 6.7 W without FBG, hence the loss amounts to less than 3%. We compare the results for two different FBG-reflectivities and operate the diode laser at 25°C and 30°C. The FBGs are directly written into the multimode fibers with an ultra-fast laser (100 fs, 800 nm) and the phase mask technique.
Author(s)
Klein, Sarah  
Giesberts, Martin  
Traub, Martin  
Fitzau, Oliver
Hoffmann, Dieter
Mainwork
IEEE High Power Diode Lasers and Systems Conference, HPD 2019. Proceedings  
Conference
High Power Diode Lasers and Systems Conference (HPD) 2019  
Photonex Event 2019  
DOI
10.1109/HPD48113.2019.8938607
Language
English
Fraunhofer-Institut für Lasertechnik ILT  
Keyword(s)
  • High Power Diode Lasers

  • spectral stabilization

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