International audienceWe report what we believe to be the lowest phase noise optical-to-microwave frequency division using fiber-based femtosecond optical frequency combs: a residual phase noise of -120 dBc/Hz at 1 Hz offset from an 11.55 GHz carrier frequency. Furthermore, we report a detailed investigation into the fundamental noise sources which affect the division process itself. Two frequency combs with quasi-identical configurations are referenced to a common ultrastable cavity laser source. To identify each of the limiting effects, we implement an ultra-low noise carrier-suppression measurement system, which avoids the detection and amplification noise of more conventional techniques. This technique suppresses these unwanted sources ...
International audienceIn this article, we present a very simple design based on commercial devices f...
When a femtosecond laser is servoed onto an ultra-stable cw laser, its repetition rate acquire an ex...
Abstract – The ability of a frequency comb from a femtosecond mode-locked laser to faithfully reprod...
International audienceWe report what we believe to be the lowest phase noise optical-to-microwave fr...
International audienceWe report what we believe to be the lowest phase noise optical-to-microwave fr...
International audienceWe report what we believe to be the lowest phase noise optical-to-microwave fr...
We report what we believe to be the lowest phase noise optical-to-microwave frequency division usin...
International audienceIn this letter, we report on all-optical fiber approach to the generation of u...
International audienceIn this letter, we report on all-optical fiber approach to the generation of u...
International audienceIn this letter, we report on all-optical fiber approach to the generation of u...
International audienceIn this letter, we report on all-optical fiber approach to the generation of u...
An ultra-low phase noise microwave frequency is transferred over 82 km of installed fibre by propaga...
In this Letter we report on an all-optical-fiber approach to the generation of ultra-low-noise micro...
International audienceWe report on the generation of ultra-low phase noise microwave signals at 12GH...
An optical frequency comb locked to a stable optical reference can serve as a source for microwave s...
International audienceIn this article, we present a very simple design based on commercial devices f...
When a femtosecond laser is servoed onto an ultra-stable cw laser, its repetition rate acquire an ex...
Abstract – The ability of a frequency comb from a femtosecond mode-locked laser to faithfully reprod...
International audienceWe report what we believe to be the lowest phase noise optical-to-microwave fr...
International audienceWe report what we believe to be the lowest phase noise optical-to-microwave fr...
International audienceWe report what we believe to be the lowest phase noise optical-to-microwave fr...
We report what we believe to be the lowest phase noise optical-to-microwave frequency division usin...
International audienceIn this letter, we report on all-optical fiber approach to the generation of u...
International audienceIn this letter, we report on all-optical fiber approach to the generation of u...
International audienceIn this letter, we report on all-optical fiber approach to the generation of u...
International audienceIn this letter, we report on all-optical fiber approach to the generation of u...
An ultra-low phase noise microwave frequency is transferred over 82 km of installed fibre by propaga...
In this Letter we report on an all-optical-fiber approach to the generation of ultra-low-noise micro...
International audienceWe report on the generation of ultra-low phase noise microwave signals at 12GH...
An optical frequency comb locked to a stable optical reference can serve as a source for microwave s...
International audienceIn this article, we present a very simple design based on commercial devices f...
When a femtosecond laser is servoed onto an ultra-stable cw laser, its repetition rate acquire an ex...
Abstract – The ability of a frequency comb from a femtosecond mode-locked laser to faithfully reprod...