Direct comparison of two spin-squeezed optical clock ensembles at the 10−17 level
Author:
Funder
NSF graduate research fellowship
United States Department of Defense | Defense Advanced Research Projects Agency
Publisher
Springer Science and Business Media LLC
Link
https://www.nature.com/articles/s41567-023-02310-1.pdf
Reference57 articles.
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2. Brewer, S. M. et al. 27Al+ quantum-logic clock with a systematic uncertainty below 10−18. Phys. Rev. Lett. 123, 033201 (2019).
3. McGrew, W. F. et al. Atomic clock performance enabling geodesy below the centimetre level. Nature 564, 87–90 (2018).
4. Beloy, K. et al. Frequency ratio measurements at 18-digit accuracy using an optical clock network. Nature 591, 564–569 (2021).
5. Roberts, B. M. et al. Search for transient variations of the fine structure constant and dark matter using fiber-linked optical atomic clocks. New J. Phys. 22, 093010 (2020).
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