It is well known that temperature variations and acoustic noise affect ultrastable frequency dissemination along optical fiber. Active stabilization techniques are in general adopted to compensate for the fiber-induced phase noise. However, despite this compensation, the ultimate link performances remain limited by the so called delay-unsuppressed fiber noise that is related to the propagation delay of the light in the fiber. In this paper, we demonstrate a data post-processing approach which enables us to overcome this limit. We implement a subtraction algorithm between the optical signal delivered at the remote link end and the round-trip signal. In this way, a 6dB improvement beyond the fundamental limit imposed by delay-unsuppressed noi...
In the long-haul fiber link, the phase noise introduced by erbium-doped fibers amplifiers (EDFAs) ca...
International audienceWe report a laboratory demonstration of the dissemination of an ultrastable op...
International audienceWe present an hybrid fiber link combining effective optical frequency transfer...
It is known that temperature variations and acoustic noise affect ultrastable frequency disseminatio...
We theoretically and experimentally investigate relevant noise processes arising in optical fiber li...
Abstract — We have recently demonstrated the coherent transfer of an optical signal over a 251 km li...
International audienceWe theoretically and experimentally investigate relevant noise processes arisi...
International audienceIn recent years, the use of optical frequency dissemination through telecommun...
High-stability optical frequency comparison over fiber link enables the establishment of ultrastable...
We demonstrate in-line extraction of an ultrastable frequency signal over an optical link of 92 km o...
International audienceWe present a study of the fundamental limit of fiber links using dedicated lin...
We demonstrate in-line extraction of an ultra-stable frequency signal over an optical link of 92-km ...
We report a cascaded optical link of 1100 km for ultra-stable frequency distribution over an Interne...
We report a cascaded optical link of 1100 km for ultra-stable frequency distribution over an Interne...
To significantly improve the frequency references used in radio-astronomy and the precision measurem...
In the long-haul fiber link, the phase noise introduced by erbium-doped fibers amplifiers (EDFAs) ca...
International audienceWe report a laboratory demonstration of the dissemination of an ultrastable op...
International audienceWe present an hybrid fiber link combining effective optical frequency transfer...
It is known that temperature variations and acoustic noise affect ultrastable frequency disseminatio...
We theoretically and experimentally investigate relevant noise processes arising in optical fiber li...
Abstract — We have recently demonstrated the coherent transfer of an optical signal over a 251 km li...
International audienceWe theoretically and experimentally investigate relevant noise processes arisi...
International audienceIn recent years, the use of optical frequency dissemination through telecommun...
High-stability optical frequency comparison over fiber link enables the establishment of ultrastable...
We demonstrate in-line extraction of an ultrastable frequency signal over an optical link of 92 km o...
International audienceWe present a study of the fundamental limit of fiber links using dedicated lin...
We demonstrate in-line extraction of an ultra-stable frequency signal over an optical link of 92-km ...
We report a cascaded optical link of 1100 km for ultra-stable frequency distribution over an Interne...
We report a cascaded optical link of 1100 km for ultra-stable frequency distribution over an Interne...
To significantly improve the frequency references used in radio-astronomy and the precision measurem...
In the long-haul fiber link, the phase noise introduced by erbium-doped fibers amplifiers (EDFAs) ca...
International audienceWe report a laboratory demonstration of the dissemination of an ultrastable op...
International audienceWe present an hybrid fiber link combining effective optical frequency transfer...