Stable radio-frequency transfer over optical fiber by phase-conjugate frequency mixing
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He, Yabai
Orr, Brian J
Wouters, Michael J
Luiten, Andre N
Aben, Guido
Warrington, Richard B
Baldwin, Kenneth
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Optical Society of America
Abstract
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 × 10(-17) with an averaging time of 10(4) 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 remote, high-quality quartz oscillator, this system is potentially applicable to transcontinental optical-fiber time and frequency dissemination where the optical round-trip propagation time is significant.
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Optics express
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Open Access
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Attribution 4.0 International (CC BY 4.0)
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