Improvements in NIST-F1 and a resulting accuracy of δf/f = 0.61 × 10-15

ieee(2004)

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摘要
Over the last several years we have made many improvements to NIST-F1 (a laser-cooled cesium fountain primary frequency standard) resulting in a reduction in the uncertainty by nearly a factor of 2 in the realization of the SI second at NIST. We recently submitted an evaluation with a combined standard fractional uncertainty of 0.61 × 10-15 to the BIPM (Bureau International des Poids et Mesures). The total fractional uncertainty of the evaluation (including dead time and time transfer contributions) was 0.88 × 10-15. This is the smallest uncertainty in a frequency standard yet submitted to the BIPM.
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atomic clocks,caesium,frequency standards,laser cooling,measurement uncertainty,bipm,bureau international des poids et mesures,nist-f1,si second,cesium fountain primary frequency standard,combined standard fractional uncertainty,dead time,laser-cooled cesium frequency standard,time transfer
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