We demonstrate long-distance (≥100-km) synchronization of the phase of a radio-frequency reference over an optical-fiber network without needing to actively stabilize the optical path length. Frequency mixing is used to achieve passive phase-conjugate cancellation of fiber-length fluctuations, ensuring that the phase difference between the reference and synchronized oscillators is independent of the link length. The fractional radio-frequency-transfer stability through a 100-km "real-world" urban optical-fiber network is 6 x 10⁻¹⁷ with an averaging time of 10⁴ s. Our compensation technique is robust, providing long-term stability superior to that of a hydrogen maser. By combining our technique with the short-term stability provided by a rem...
International audienceWe report an optical link of 540 km for ultrastable frequency distribution ove...
International audienceWe report an optical link of 540 km for ultrastable frequency distribution ove...
International audienceWe report an optical link of 540 km for ultrastable frequency distribution ove...
We demonstrate long-distance (≥100-km) synchronization of the phase of a radio-frequency reference o...
We report a novel technique for highly stable transfer of a frequency comb over long optical fiber l...
To achieve high-stability and high-precision dissemination of radio frequency signals over a long di...
Passive phase-conjugation enables precise fiber-optical transfer of radio-frequency reference signal...
We developed a new radio frequency dissemination system based on an optical fiber link. A 1.55 mu m ...
Abstract-We report a novel system for highly stable 100 MHz mode locked pulse as a reference frequen...
International audienceWe transferred the frequency of an ultra-stable laser over 86 km of urban fibe...
International audienceWe transferred the frequency of an ultra-stable laser over 86 km of urban fibe...
We present a radio-frequency (RF) signal distribution system via optical fibers. We utilize an all-d...
International audienceWe report an optical link of 540 km for ultrastable frequency distribution ove...
International audienceWe report an optical link of 540 km for ultrastable frequency distribution ove...
Very-long-baseline interferometry (VLBI) for high-resolution astronomical imaging requires phase-sta...
International audienceWe report an optical link of 540 km for ultrastable frequency distribution ove...
International audienceWe report an optical link of 540 km for ultrastable frequency distribution ove...
International audienceWe report an optical link of 540 km for ultrastable frequency distribution ove...
We demonstrate long-distance (≥100-km) synchronization of the phase of a radio-frequency reference o...
We report a novel technique for highly stable transfer of a frequency comb over long optical fiber l...
To achieve high-stability and high-precision dissemination of radio frequency signals over a long di...
Passive phase-conjugation enables precise fiber-optical transfer of radio-frequency reference signal...
We developed a new radio frequency dissemination system based on an optical fiber link. A 1.55 mu m ...
Abstract-We report a novel system for highly stable 100 MHz mode locked pulse as a reference frequen...
International audienceWe transferred the frequency of an ultra-stable laser over 86 km of urban fibe...
International audienceWe transferred the frequency of an ultra-stable laser over 86 km of urban fibe...
We present a radio-frequency (RF) signal distribution system via optical fibers. We utilize an all-d...
International audienceWe report an optical link of 540 km for ultrastable frequency distribution ove...
International audienceWe report an optical link of 540 km for ultrastable frequency distribution ove...
Very-long-baseline interferometry (VLBI) for high-resolution astronomical imaging requires phase-sta...
International audienceWe report an optical link of 540 km for ultrastable frequency distribution ove...
International audienceWe report an optical link of 540 km for ultrastable frequency distribution ove...
International audienceWe report an optical link of 540 km for ultrastable frequency distribution ove...