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  4. Compact rubidium-stabilized multi-frequency reference source in the 1.55-μm region
 
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Compact rubidium-stabilized multi-frequency reference source in the 1.55-μm region

Auteur(s)
Matthey-De-L'Endroit, Renaud 
Institut de physique 
Gruet, Florian 
Institut de physique 
Schilt, Stephane 
Institut de physique 
Mileti, Gaetano 
Institut de physique 
Date de parution
2015
In
Optics Letters, Optical society of America
Vol.
40
No
11
De la page
2576
A la page
2579
Mots-clés
  • Optical standards and testing
  • Metrological instrumentation
  • Laser stabilization
  • Spectroscopy
  • saturation
  • Optical standards and...

  • Metrological instrume...

  • Laser stabilization

  • Spectroscopy

  • saturation

Résumé
Combining light modulation and frequency conversion techniques, a compact and simple frequency-stabilized optical frequency comb spanning over 45 nm in the 1.56- μm wavelength region is demonstrated. It benefits from the high-frequency stability achievable from rubidium atomic transitions at 780 nm probed in a saturation absorption scheme, which is transferred to the 1.56- μm spectral region via a second-harmonic generation process. The optical frequency comb is generated by an electro-optic modulator enclosed in a Fabry–Perot cavity that is injected by the fundamental frequency stabilized laser. Frequency stability better than 2 kHz has been demonstrated on time scales between 1000 s and 2 days both at 1560 nm, twice the rubidium wavelength, and for a comb line at 1557 nm.
Identifiants
https://libra.unine.ch/handle/123456789/7433
_
10.1364/OL.40.002576
Type de publication
journal article
Dossier(s) à télécharger
 main article: Matthey_R.-Compact_rubidium-20150601.pdf (1.93 MB)
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