We describe the stabilization of the beatnote of an Er,Yb:glass dual-frequency laser at 1.5 mu m 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 dBrad(2)/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 dBrad(2)/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.
机构:
CNRS, Franche Comte Elect Mecan Thermique & Opt Sci &, Unite Mixte Rech, UMR 6174, Besancon, FranceCNRS, Franche Comte Elect Mecan Thermique & Opt Sci &, Unite Mixte Rech, UMR 6174, Besancon, France
Rubiola, Enrico
;
Boudot, Rodolphe
论文数: 0引用数: 0
h-index: 0
机构:CNRS, Franche Comte Elect Mecan Thermique & Opt Sci &, Unite Mixte Rech, UMR 6174, Besancon, France
机构:
CNRS, Franche Comte Elect Mecan Thermique & Opt Sci &, Unite Mixte Rech, UMR 6174, Besancon, FranceCNRS, Franche Comte Elect Mecan Thermique & Opt Sci &, Unite Mixte Rech, UMR 6174, Besancon, France
Rubiola, Enrico
;
Boudot, Rodolphe
论文数: 0引用数: 0
h-index: 0
机构:CNRS, Franche Comte Elect Mecan Thermique & Opt Sci &, Unite Mixte Rech, UMR 6174, Besancon, France