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Uncertainty evaluation of the second-order Zeeman shift of a transportable 87Rb atomic fountain clock

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In this article, taking advantage of the special magnetic shieldings and the optimal coil design of a transportable Rb atomic fountain clock, the intensity distribution in space and the fluctuations… Click to show full abstract

In this article, taking advantage of the special magnetic shieldings and the optimal coil design of a transportable Rb atomic fountain clock, the intensity distribution in space and the fluctuations with time of the quantization magnetic field in the Ramsey region were measured using the atomic magneton-sensitive transition method. In an approximately 310 mm long Ramsey region, a peak-to-peak magnetic field intensity of a 0.74 nT deviation in space and a 0.06 nT fluctuation with time were obtained. These results correspond to a second-order Zeeman frequency shift of approximately (2095.5±5.1)×10−17. This is an essential step in advancing the total frequency uncertainty of the fountain clock to the order of 10−17.

Keywords: second order; fountain clock; atomic fountain; fountain

Journal Title: Chinese Optics Letters
Year Published: 2021

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