LNE-SYRTE, Observatoire de Paris, CNRS, UMPC, 61 avenue de l'Observatoire, 75014 Paris, France.
Phys Rev Lett. 2011 Apr 1;106(13):130801. doi: 10.1103/PhysRevLett.106.130801.
We demonstrate agreement between measurements and ab initio calculations of the frequency shifts caused by distributed cavity phase variations in the microwave cavity of a primary atomic fountain clock. Experimental verification of the finite element models of the cavities gives the first quantitative evaluation of this leading uncertainty and allows it to be reduced to δν/ν=±8.4×10(-17). Applying these experimental techniques to clocks with improved microwave cavities will yield negligible distributed cavity phase uncertainties, less than ±1×10(-17).
我们展示了分布式腔相位变化引起的微波腔中主原子喷泉钟的频率移动的测量值与从头计算值之间的一致性。对腔的有限元模型的实验验证给出了对这个主要不确定度的首次定量评估,并使其能够降低到 δν/ν=±8.4×10(-17)。将这些实验技术应用于具有改进微波腔的时钟,将产生可忽略不计的分布式腔相位不确定度,小于 ±1×10(-17)。