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Microwave field amplitude stabilization using Ramsey spectroscopy signal

机译:使用Ramsey光谱信号稳定微波场振幅

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We present a method to actively stabilize the amplitude of the microwave field which constitutes the probe for many state-of-the-art compact atomic clocks. The method applies to clocks working in pulsed operation, specifically with a Ramsey scheme. The proposed technique relies on information directly extracted from the clock atomic signal, as it computes the gradient in the two variables (amplitude and frequency) characterizing the probe field, instead of differentiating solely the frequency response, as in usual operation. Magnetic field sensing based on spectroscopy has proven to be a valuable tool for metrology and precise measurement field. We demonstrate the advantage of using the spectroscopic signal to stabilize the microwave field amplitude, in order to reach 10-15stability with compact clocks, by mitigating cavity-pulling shift effects.
机译:我们提出了一种有效稳定微波场振幅的方法,该方法构成了许多最新型紧凑型原子钟的探针。该方法适用于以脉冲方式工作的时钟,特别是采用拉姆齐方案的时钟。所提出的技术依赖于直接从时钟原子信号中提取的信息,因为它计算表征探测场的两个变量(振幅和频率)中的梯度,而不是像通常操作中那样仅区分频率响应。基于光谱学的磁场感应已被证明是用于计量和精确测量领域的有价值的工具。我们展示了使用光谱信号来稳定微波场振幅以达到10的优势 -15 通过减轻空腔拉动的移相效应,使紧凑型时钟保持稳定。

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