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

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

Author(s)
Matthey-De-L'Endroit, Renaud  
Laboratoire temps-fréquence  
Gruet, Florian  
Laboratoire temps-fréquence  
Schilt, Stephane  
Laboratoire temps-fréquence  
Mileti, Gaetano  
Laboratoire temps-fréquence  
Date issued
June 1, 2015
In
Optics Letters
Vol
11
No
40
From page
2576
To page
2579
Reviewed by peer
1
Subjects
Optical standards and testing Metrological instrumentation Laser stabilization Spectroscopy saturation
Abstract
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.
Publication type
journal article
Identifiers
https://libra.unine.ch/handle/20.500.14713/62673
DOI
10.1364/OL.40.002576
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2016-11-08_2600_7674.pdf

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