DocumentCode :
3558835
Title :
Dual-Frequency Laser at 1.5 \\mu m for Optical Distribution and Generation of High-Purity Microwave Signals
Author :
Pillet, Gr?©goire ; Morvan, Lo?¯c ; Brunel, Marc ; Bretenaker, Fabien ; Dolfi, Daniel ; Vallet, Marc ; Huignard, Jean-Pierre ; Le Floch, Albert
Author_Institution :
Phys. Dept., Thales Res. & Technol., Palaiseau
Volume :
26
Issue :
15
fYear :
2008
Firstpage :
2764
Lastpage :
2773
Abstract :
We describe the stabilization of the beatnote of an Er,Yb:glass dual-frequency laser at 1.5 mum with and without an external microwave reference. In the first case, a classical optical phase-locked loop (OPLL) is used, and absolute phase noise levels as low as -117 dBrad2/Hz at 10 kHz from the carrier are reported. In the second case one or two fiber-optic delay lines are used to lock the frequency of the beatnote. Absolute phase noise levels as low as -107 dBrad2/Hz at 10 kHz from the carrier are measured, fairly independant of the beatnote frequency varying from 2 to 6 GHz. An analysis of the phase noise level limitation is presented in the linear servo-loop theory framework. The expected phase noise level calculated from the measurement of the different noise sources fits well with the predictions.
Keywords :
erbium; frequency locked loops; microwave generation; microwave oscillators; microwave photonics; optical delay lines; optical fibre communication; optical glass; optical phase locked loops; phase noise; solid lasers; ytterbium; Er,Yb:glass laser; JkJk:Er,Yb; beatnote frequency; dual-frequency laser; fiber-optic delay lines; frequency 2 GHz to 6 GHz; linear servo-loop theory; microwave oscillators; microwave signal generation; optical microwave signal distribution; optical phase-locked loop; phase noise; phase noise level; solid-state lasers; stabilization; wavelength 1.5 mum; Delay lines; Frequency; Laser noise; Laser stability; Masers; Noise measurement; Optical noise; Phase locked loops; Phase measurement; Phase noise; Delay lock loops; delay lines; frequency-locked loops; microwave oscillators; optical phase-locked loops (OPLL); phase noise; solid-state lasers;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2008.927209
Filename :
4652295
Link To Document :
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