Abstract
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
S
1
/
2
→
2
F
7
/
2
transition. The total systematic frequency shift was measured with a fractional standard systematic uncertainty of
2.2
×
10
−
18
. Furthermore, the absolute frequency of the E3 transition of the 171Yb+ 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
×
10
−
16
and
1.1
×
10
−
15
, and all were in agreement with the 2021 BIPM recommended frequency.
Funder
Engineering and Physical Sciences Research Council
Science and Technology Facilities Council
European Metrology Programme for Innovation and Research
Department for Business, Energy and Industrial Strategy, UK Government