Comparing a mercury optical lattice clock with microwave and optical frequency standards
arXiv:1603.02026 · doi:10.1088/1367-2630/18/11/113002
Abstract
In this paper we report the evaluation of an optical lattice clock based on neutral mercury down to a relative uncertainty of . Comparing this characterized frequency standard to a Cs atomic fountain we determine the absolute frequency of the transition of Hg as Hz Hz (statistical) Hz (systematic), limited solely by the realization of the SI second. Furthermore, by comparing the mercury optical lattice clock to a Rb atomic fountain, we determine for the first time to our knowledge the ratio between the Hg clock transition and the Rb ground state hyperfine transition. Finally we present a direct optical to optical measurement of the Hg/Sr frequency ratio. The obtained value of with a fractional uncertainty of is in excellent agreement with the same measurement obtained by Yamanaka et al. (arXiv:1503.07941). This makes this frequency ratio one of the few physical quantities agreed upon by different laboratories to this level of uncertainty. Frequency ratio measurements of the kind of those reported in this paper have a strong impact for frequency metrology but also for fundamental physics as they can be used to monitor putative variations of fundamental constants.
23 pages, 12 figures, updated version including journal reference
References in corpus (13)
- Systematic evaluation of an atomic clock at 2e-18 total uncertainty
- Frequency ratio of two optical clock transitions in Yb and constraints on the time-variation of fundamental constants
- A clock network for geodesy and fundamental science
- Improved limit on a temporal variation of from comparisons of Yb and Cs atomic clocks
- Progress in Atomic Fountains at LNE-SYRTE
- Frequency ratio of Yb and Sr clocks with uncertainty at 150 s averaging time
- Trapping of Neutral Mercury Atoms and Prospects for Optical Lattice Clocks
- An atomic clock with room-temperature blackbody Stark uncertainty
- Optical to microwave clock frequency ratios with a nearly continuous strontium optical lattice clock
- Frequency ratios of Sr, Yb and Hg based optical lattice clocks and their applications
- Strategies for reducing the light shift in atomic clocks
- Frequency ratio measurement of 171Yb and 87Sr optical lattice clocks
- Phase Analysis for Frequency Standards in the Microwave and Optical Domains
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