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On the 1/f Frequency Noise in Ultra-Stable Quartz Oscillators

机译:关于超稳定石英振荡器的1 / f频率噪声

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摘要

The frequency flicker of an oscillator, which appears as a 1/f^3 line in the phase noise spectral density, and as a floor on the Allan variance plot, originates from two basic phenomena, namely: (1) the 1/f phase noise turned into 1/f frequency noise via the Leeson effect, and (2) the 1/f fluctuation of the resonator natural frequency. The discussion on which is the dominant effect, thus on how to improve the stability of the oscillator, has been going on for years without giving a clear answer. This article tackles the question by analyzing the phase noise spectrum of several commercial oscillators and laboratory prototypes, and demonstrates that the fluctuation of the resonator natural frequency is the dominant effect. The investigation method starts from reverse engineering the oscillator phase noise in order to show that if the Leeson effect was dominant, the resonator merit factor Q would be too low as compared to the available technology.
机译:振荡器的频率闪烁在相位噪声频谱密度中显示为1 / f ^ 3线,并且在艾伦方差图上显示为底线,它来自两个基本现象,即:(1)1 / f相位噪声通过利森效应变成1 / f频率噪声,(2)谐振器固有频率的1 / f波动。多年来一直在讨论哪一个是主要影响,从而如何提高振荡器的稳定性,却没有给出明确的答案。本文通过分析几种商用振荡器和实验室原型的相位噪声频谱解决了这个问题,并证明了谐振器固有频率的波动是主要的影响。研究方法从对振荡器相位噪声进行逆向工程开始,以表明如果利森效应占主导地位,则与可用技术相比,谐振器品质因数Q会太低。

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  • 作者

    Rubiola, E; Giordano, V;

  • 作者单位
  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 eng
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