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Local oscillator limited frequency stability for passive atomic frequency standards using square wave frequency modulation

机译:使用方波频率调制的无源原子频率标准的本地振荡器有限频率稳定性

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Atomic frequency standards using square wave frequency modulation effectively interrogate the atomic line by switching back and forth between two frequencies with equal atomic absorption values. For a symmetric absorption line, the slope of the responses will also be equal. In the quasistatic limit, this would seem to be an ideal interrogation process: the sign reversal of frequency slope can be removed by detection electronics to give an essentially unvarying sensitivity to local oscillator frequency variations. Such an interrogation would seem to eliminate L.O. aliasing and relieve stringent requirements on L.O. phase noise. Nevertheless, sign changes in the interrogation and detection processes mean that the sensitivity is actually zero at some point in the cycle. We derive consequences of this fact by an analysis in terms of the sensitivity function g(t). For white phase noise, we derive an optimal form for g(t) and show that the aliased noise always diverges as g(t) approaches a constant. For flicker phase noise, we find a limiting form that could, in principle, eliminate the aliasing effect; in practice, however, the improvement is limited by a slow dependence on available bandwidth. Finally, we derive optimized forms for any phase noise spectrum.
机译:使用方波频率调制的原子频率标准通过在具有相等原子吸收值的两个频率之间来回切换,有效地询问了原子线。对于对称的吸收线,响应的斜率也将相等。在准静态范围内,这似乎是一个理想的询问过程:可以通过检测电子设备消除频率斜率的正负反转,从而对本地振荡器的频率变化基本保持不变。这样的审问似乎消除了L.O.消除混叠并减轻L.O.的严格要求相位噪声。尽管如此,讯问和检测过程中的符号变化意味着灵敏度实际上在周期的某个点为零。我们通过对灵敏度函数g(t)的分析得出该事实的结果。对于白相噪声,我们导出g(t)的最佳形式,并表明当g(t)接近常数时,混叠噪声总是发散的。对于闪烁的相位噪声,我们找到了一种限制形式,该限制形式原则上可以消除混叠效应。但是,实际上,这种改进受到对可用带宽的缓慢依赖的限制。最后,我们得出任何相位噪声频谱的优化形式。

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