Interspecies clock comparison below 5 × 10-18 uncertainty with a transportable clock
Chetan Vishwakarma, Ingo Nosske, Tim Lücke, Martin Steinel, Melina Filzinger, Erik Benkler, Sören Dörscher, Nils Huntemann, Christian Lisdat
Abstract
We report a measurement of the optical frequency ratio between the 2S1/2(F=0)--2F7/2(F=3) electric-octupole (E3) transition of 171Yb+ and the 1S0--3P0 transition of 87Sr, νYb+/νSr = 1.495\,991\,618\,544\,900\,588\,1(65). Reaching a fractional uncertainty of 4.3 × 10-18, this result improves upon the previous best by more than a factor of three and is among the few that meet the requirements for interspecies clock comparisons specified by the roadmap towards the redefinition of the SI second. The comparison is between a transportable optical lattice clock and a stationary single-ion clock. It spans a period of nearly two years, during which the transportable clock was intermittently operated off-campus. The ratio was reproducibly measured during four separate campaigns, which are consistent within their statistical uncertainties. The results demonstrate reproducible 10-18 level operation of the transportable clock and thus validate its application for chronometric geodesy and as a transfer standard for inter-institute clock comparisons, e.g., in the absence of optical fiber links.
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