4.8 Article

Coherent optical clock down-conversion for microwave frequencies with 10-18 instability

Journal

SCIENCE
Volume 368, Issue 6493, Pages 889-+

Publisher

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/science.abb2473

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Funding

  1. National Institute of Standards and Technology
  2. DARPA PULSE program

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Optical atomic clocks are poised to redefine the Systeme International (SI) second, thanks to stability and accuracy more than 100 times better than the current microwave atomic clock standard. However, the best optical clocks have not seen their performance transferred to the electronic domain, where radar, navigation, communications, and fundamental research rely on less stable microwave sources. By comparing two independent optical-to-electronic signal generators, we demonstrate a 10-gigahertz microwave signal with phase that exactly tracks that of the optical clock phase from which it is derived, yielding an absolute fractional frequency instability of 1 x 10(-18) in the electronic domain. Such faithful reproduction of the optical clock phase expands the opportunities for optical clocks both technologically and scientifically for time dissemination, navigation, and long-baseline interferometric imaging.

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