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$^{171}$Yb$^+$ optical clock with $2.2\times 10^{-18}$ systematic uncertainty and absolute frequency measurements

Published 21 Mar 2024 in physics.atom-ph | (2403.14423v1)

Abstract: A full evaluation of the uncertainty budget for the ytterbium ion optical clock at the National Physical Laboratory (NPL) was performed on the electric octupole (E3) $2\mathrm{S}_{1/2}\,\rightarrow\, 2\mathrm{F}_{7/2}$ transition. The total systematic frequency shift was measured with a fractional standard systematic uncertainty of $2.2\times 10{-18}$. Furthermore, the absolute frequency of the E3 transition of the ${171}$Yb$+$ ion was measured between 2019 and 2023 via a link to International Atomic Time (TAI) and against the local caesium fountain NPL-CsF2. The absolute frequencies were measured with fractional standard uncertainties between $3.7 \times 10{-16}$ and $1.1 \times 10{-15}$, and all were in agreement with the 2021 BIPM recommended frequency.

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