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  4. Ultra-stable microwave generation with a diode-pumped solid-state laser in the 1.5-µm range

Ultra-stable microwave generation with a diode-pumped solid-state laser in the 1.5-µm range

Author(s)
Dolgovskiy, Vladimir  
Laboratoire temps-fréquence  
Schilt, Stephane  
Laboratoire temps-fréquence  
Bucalovic, Nikola  
Faculté des sciences  
Di Domenico, Gianni  
Laboratoire temps-fréquence  
Grop, Serge
Dubois, Benoît
Giordano, Vincent
Südmeyer, Thomas  
Laboratoire temps-fréquence  
Date issued
2014
In
Applied Physics B : Lasers and optics, Springer
Vol
116
No
3
From page
593
To page
601
Abstract
We demonstrate the first ultra-stable microwave generation based on a 1.5-µm diode-pumped solid-state laser (DPSSL) frequency comb. Our system relies on optical-to-microwave frequency division from a planar-waveguide external cavity laser referenced to an ultra-stable Fabry–Perot cavity. The evaluation of the microwave signal at ~10 GHz uses the transportable ultra-low-instability signal source ULISS®, which employs a cryo-cooled sapphire oscillator. With the DPSSL comb, we measured −125 dBc/Hz phase noise at 1 kHz offset frequency, likely limited by the photo-detection shot-noise or by the noise floor of the reference cryo-cooled sapphire oscillator. For comparison, we also generated low-noise microwave using a commercial Er:fiber comb stabilized in similar conditions and observed >20 dB lower phase noise in the microwave generated from the DPSSL comb. Our results confirm the high potential of the DPSSL technology for low-noise comb applications.
Publication type
journal article
Identifiers
https://libra.unine.ch/handle/20.500.14713/65223
DOI
10.1007/s00340-013-5740-7
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Dolgovskiy_V.-Ultra-stable_microwave-20140821.pdf

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