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000632193 1001_ $$0P:(DE-H253)PIP1017955$$aShafak, Kemal$$b0$$eCorresponding author
000632193 1112_ $$aAdvances in Optical and Mechanical Technologies for Telescopes and Instrumentation VI$$cYokohama$$d2024-06-16 - 2024-06-22$$wJapan
000632193 245__ $$aOptical-to-microwave clock synchronization with few-femtosecond residual timing jitter for space ground segments
000632193 260__ $$aBellingham, Wash.$$bSPIE$$c2024
000632193 29510 $$aAdvances in Optical and Mechanical Technologies for Telescopes and Instrumentation VI : [Proceedings] - SPIE, 2024. - ISBN 97815106752309781510675247 - doi:10.1117/12.3019657
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000632193 520__ $$aHigh-precision timing is vital in space communication for tasks like navigation, data transfer, and coordinating satellite constellations. Currently, ground segments rely on microwave clocks, but emerging optical clocks and links offer great improvements in resolution, precision, and stability for next generation systems. However, integrating optical clocks with conventional microwave sources presents a challenge. Our solution, an optical-to-microwave phase detector, addresses this by enabling synchronization with few-femtosecond residual jitter between an optical- and a microwave source. With a phase/timing resolution of 0.01 fs RMS and a noise-floor below 1 fs RMS, this detector becomes a key technology as optical clock adoption grows in ground segments.
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000632193 7001_ $$aDai, Anan$$b1
000632193 7001_ $$0P:(DE-H253)PIP1107863$$aCano Vargas, Erwin$$b2
000632193 7001_ $$0P:(DE-H253)PIP1099894$$aHagemann, Michael$$b3
000632193 7001_ $$0P:(DE-H253)PIP1013198$$aKärtner, Franz$$b4
000632193 773__ $$0PERI:(DE-600)2398361-9$$a10.1117/12.3019657$$p131002k$$tProceedings of SPIE$$v13100$$x0038-7355$$y2024
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