International audienceWe report the first demonstration of a long-distance ultra stable frequency dissemination in the microwave range. A 9.15 GHz signal is transferred through a 86-km urban optical link with a fractional frequency instability of 1.3x10-15 at 1 s integration time and below 10-18 at one day. The optical link phase noise compensation is performed with a round-trip method. To achieve such a result we implement light polarisation scrambling and dispersion compensation. This link outperforms all the previous radiofrequency links and compares well with recently demonstrated full optical links
International audienceWe report on the development of a simple-architecture fiber-based frequency di...
International audienceRF frequency transfer over an urban 86 km fibre has been demonstrated with a r...
We report the dissemination of an ultrastable optical frequency signal to two distant users simultan...
International audienceWe report the first demonstration of a long-distance ultra stable frequency di...
International audienceRF frequency transfer over an urban 86 km fibre has been demonstrated with a r...
International audienceWe transferred the frequency of an ultra-stable laser over a 108 km urban fibe...
We use a new technique to disseminate microwave reference signals along ordinary optical fiber. The ...
We use a new technique to disseminate microwave reference signals along ordinary optical fiber. The ...
We present in this paper results on a new dissemination system of ultra-stable reference signal at 1...
We use a new technique to disseminate microwave reference signals along ordinary optical fiber. The ...
International audienceWe demonstrate a cascaded optical link for ultrastable frequency dissemination...
International audienceWe transferred the frequency of an ultra-stable laser over 86 km of urban fibe...
International audienceWe report an optical link of 540 km for ultrastable frequency distribution ove...
International audienceWe report on the development of a simple-architecture fiber-based frequency di...
International audienceRF frequency transfer over an urban 86 km fibre has been demonstrated with a r...
We report the dissemination of an ultrastable optical frequency signal to two distant users simultan...
International audienceWe report the first demonstration of a long-distance ultra stable frequency di...
International audienceRF frequency transfer over an urban 86 km fibre has been demonstrated with a r...
International audienceWe transferred the frequency of an ultra-stable laser over a 108 km urban fibe...
We use a new technique to disseminate microwave reference signals along ordinary optical fiber. The ...
We use a new technique to disseminate microwave reference signals along ordinary optical fiber. The ...
We present in this paper results on a new dissemination system of ultra-stable reference signal at 1...
We use a new technique to disseminate microwave reference signals along ordinary optical fiber. The ...
International audienceWe demonstrate a cascaded optical link for ultrastable frequency dissemination...
International audienceWe transferred the frequency of an ultra-stable laser over 86 km of urban fibe...
International audienceWe report an optical link of 540 km for ultrastable frequency distribution ove...
International audienceWe report on the development of a simple-architecture fiber-based frequency di...
International audienceRF frequency transfer over an urban 86 km fibre has been demonstrated with a r...
We report the dissemination of an ultrastable optical frequency signal to two distant users simultan...