Kenig Eyal, Cross M C, Villanueva L G, Karabalin R B, Matheny M H, Lifshitz Ron, Roukes M L
Kavli Nanoscience Institute and Condensed Matter Physics, California Institute of Technology, MC 149-33, Pasadena, California 91125, USA.
Phys Rev E Stat Nonlin Soft Matter Phys. 2012 Nov;86(5 Pt 2):056207. doi: 10.1103/PhysRevE.86.056207. Epub 2012 Nov 13.
We demonstrate an analytical method for calculating the phase sensitivity of a class of oscillators whose phase does not affect the time evolution of the other dynamic variables. We show that such oscillators possess the possibility for complete phase noise elimination. We apply the method to a feedback oscillator which employs a high Q weakly nonlinear resonator and provide explicit parameter values for which the feedback phase noise is completely eliminated and others for which there is no amplitude-phase noise conversion. We then establish an operational mode of the oscillator which optimizes its performance by diminishing the feedback noise in both quadratures, thermal noise, and quality factor fluctuations. We also study the spectrum of the oscillator and provide specific results for the case of 1/f noise sources.
我们展示了一种用于计算一类振荡器相位灵敏度的分析方法,这类振荡器的相位不影响其他动态变量的时间演化。我们表明,此类振荡器具有完全消除相位噪声的可能性。我们将该方法应用于一个采用高Q值弱非线性谐振器的反馈振荡器,并给出了能完全消除反馈相位噪声的明确参数值,以及不存在幅度 - 相位噪声转换的其他参数值。然后,我们建立了该振荡器的一种工作模式,通过减小两个正交分量中的反馈噪声、热噪声和品质因数波动来优化其性能。我们还研究了该振荡器的频谱,并给出了1/f噪声源情况下的具体结果。