International audienceWe describe a 1 GHz reference signal with 10-15 level fractional frequency stability for averaging times longer than 1 s, synthesized from a 10.8 GHz oscillation frequency of a cryogenic-sapphire-resonator-based ultra-stable oscillator and phase locked to a hydrogen maser with a time constant of about 1000 s. The degradation of the short term stability of the reference signal by phase locking to the hydrogen maser was evaluated. We also report on the implementation of the 1 GHz signal down converted to 5 MHz as a reference oscillator for a cesium atomic fountain frequency standard
We have developed a 1 GHz synthesis chain based on a cryogenic sapphire oscillator. The 11.2005 GHz ...
International audienceWe report in this letter the outstanding frequency stability performances of a...
The frequency stability of an atomic fountain clock was significantly improved by employing an ultra...
International audienceWe describe a 1 GHz reference signal with 10-15 level fractional frequency sta...
We describe a 1 GHz reference signal with 10-15 level fractional frequency stability for averaging t...
International audienceImprovements in the frequency stability of a reference signal synthesized from...
International audienceImprovements in the frequency stability of a reference signal synthesized from...
International audienceImprovements in the frequency stability of a reference signal synthesized from...
International audienceA synthesized microwave local oscillator for a cesium atomic frequency standar...
International audienceA synthesized microwave local oscillator for a cesium atomic frequency standar...
International audienceA synthesized microwave local oscillator for a cesium atomic frequency standar...
International audienceUltra-high short-term frequency stability has been realized in microwave oscil...
International audienceUltra-high short-term frequency stability has been realized in microwave oscil...
International audienceUltra-high short-term frequency stability has been realized in microwave oscil...
The phase noise and frequency stability measurements of 1 GHz, 100 MHz and 10 MHz signals are presen...
We have developed a 1 GHz synthesis chain based on a cryogenic sapphire oscillator. The 11.2005 GHz ...
International audienceWe report in this letter the outstanding frequency stability performances of a...
The frequency stability of an atomic fountain clock was significantly improved by employing an ultra...
International audienceWe describe a 1 GHz reference signal with 10-15 level fractional frequency sta...
We describe a 1 GHz reference signal with 10-15 level fractional frequency stability for averaging t...
International audienceImprovements in the frequency stability of a reference signal synthesized from...
International audienceImprovements in the frequency stability of a reference signal synthesized from...
International audienceImprovements in the frequency stability of a reference signal synthesized from...
International audienceA synthesized microwave local oscillator for a cesium atomic frequency standar...
International audienceA synthesized microwave local oscillator for a cesium atomic frequency standar...
International audienceA synthesized microwave local oscillator for a cesium atomic frequency standar...
International audienceUltra-high short-term frequency stability has been realized in microwave oscil...
International audienceUltra-high short-term frequency stability has been realized in microwave oscil...
International audienceUltra-high short-term frequency stability has been realized in microwave oscil...
The phase noise and frequency stability measurements of 1 GHz, 100 MHz and 10 MHz signals are presen...
We have developed a 1 GHz synthesis chain based on a cryogenic sapphire oscillator. The 11.2005 GHz ...
International audienceWe report in this letter the outstanding frequency stability performances of a...
The frequency stability of an atomic fountain clock was significantly improved by employing an ultra...