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Phase Analysis for Frequency Standards in the Microwave and Optical Domains

机译:微波和光学领域频率标准的相位分析

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Coherent manipulation of atomic states is a key concept in high-precision spectroscopy and used in atomic fountain clocks and a number of optical frequency standards. Operation of these standards can involve a number of cyclic switching processes, which may induce cycle-synchronous phase excursions of the interrogation signal and thus lead to shifts in the output of the frequency standard. We have built a field-programmable gate array (FPGA)-based phase analyzer to investigate these effects and conducted measurements on two kinds of frequency standards. For the caesium fountains PTB-CSF1 and PTB-CSF2, we were able to exclude phase variations of the microwave source at the level of a few microradians, corresponding to relative frequency shifts of less than $text{10}^{-text{16}}$. In the optical domain, we investigated phase variations in PTB’s Yb $^+$ optical frequency standard and made detailed measurements of acousto-optic modulator (AOM) chirps and their scaling with duty cycle and driving power. We ascertained that cycle-synchronous as well as long-term phase excursion do not cause frequency shifts larger than $text{10}^{-text{18}}$.
机译:原子态的相干操作是高精度光谱学中的关键概念,并用于原子喷泉时钟和许多光频率标准中。这些标准的操作可能涉及许多循环切换过程,这可能会引起询问信号的周期同步相位偏移,从而导致频率标准的输出发生偏移。我们建立了一个基于现场可编程门阵列(FPGA)的相位分析器,以研究这些影响并在两种频率标准下进行测量。对于铯喷泉PTB-CSF1和PTB-CSF2,我们能够在几个微弧度的水平上排除微波源的相位变化,对应的相对频移小于$ text {10} ^ {-text {16 }} $。在光学领域,我们研究了PTB的Yb $ ^ + $光频率标准中的相位变化,并对声光调制器(AOM)线性调频脉冲及其随占空比和驱动功率的缩放进行了详细测量。我们确定,周期同步以及长期相位偏移不会引起大于$ text {10} ^ {-text {18}} $的频移。

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