首页> 外文期刊>Metrologia: International Journal of Scientific Metrology: = Internationale Zeitschrift fur Wissenschaftliche Metrologie: = Journal International de Metrologie Scientifique >Improved accuracy of the NPL-CsF2 primary frequency standard: evaluation of distributed cavity phase and microwave lensing frequency shifts
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Improved accuracy of the NPL-CsF2 primary frequency standard: evaluation of distributed cavity phase and microwave lensing frequency shifts

机译:提高NPL-CsF2主频率标准的准确性:评估分布式腔相位和微波透镜频移

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摘要

We evaluate the distributed cavity phase (DCP) and microwave lensing frequency shifts, which were the two largest sources of uncertainty for the NPL-CsF2 caesium fountain clock. We report measurements that confirm a detailed theoretical model of the microwave cavity fields and the frequency shifts of the clock that they produce. The model and measurements significantly reduce the DCP uncertainty to 1.1 X 10~(-16). We derive the microwave lensing frequency shift for a cylindrical cavity with circular apertures. An analytic result with reasonable approximations is given, in addition to a full calculation that indicates a shift of 6.2 X 10~(-17). The measurements and theoretical models we report, along with improved evaluations of collisional and microwave leakage induced frequency shifts, reduce the frequency uncertainty of the NPL-CsF2 standard to 2.3 X 10~(-16), nearly a factor of two lower than its most recent complete evaluation.
机译:我们评估了分布式腔相位(DCP)和微波透镜频移,这是NPL-CsF2铯喷泉时钟的两个最大不确定性来源。我们报告的测量结果证实了微波腔场及其产生的时钟的频率偏移的详细理论模型。该模型和测量结果将DCP不确定度大大降低到1.1 X 10〜(-16)。我们推导了具有圆形孔的圆柱腔的微波透镜频移。除了表明位移为6.2 X 10〜(-17)的完整计算之外,还给出了具有合理近似值的分析结果。我们报告的测量和理论模型,以及对碰撞和微波泄漏引起的频移的改进评估,将NPL-CsF2标准的频率不确定性降低到2.3 X 10〜(-16),几乎是其最低值的两倍。最近完成的评估。

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