Sthal Fabrice, Devel Michel, Ghosh Santunu, Imbaud Joël, Cibiel Gilles, Bourquin Roger
IEEE Trans Ultrason Ferroelectr Freq Control. 2013 Sep;60(9):1971-7. doi: 10.1109/TUFFC.2013.2782.
Although criticized by many, Handel's quantum model for 1/f noise remains the only model giving a quantitative estimation of the level of intrinsic 1/f noise in quartz crystal resonators that is compatible with the best experimental results. In this paper, we reconsider the volume dependence in this model. We first argue that an acoustic volume, representing the volume in which the vibration energy is trapped, should be used instead of the geometrical volume between the electrodes. Then, we show that because there is an implicit dependence of the quality factor of the resonator with its thickness, the net effect of Handel's formula is not an increase of noise proportionally to the thickness of the resonator, as could be naïvely expected, but a net decrease when thickness increases. Finally, we show that a plot of Q(4)Sy versus the acoustic volume, instead of the usual Sy plot, could be useful to compare the quality of acoustic resonators having very different resonance frequencies.
尽管受到许多人的批评,但汉德尔(Handel)提出的1/f噪声量子模型仍然是唯一能够对石英晶体谐振器中固有1/f噪声水平进行定量估计的模型,该模型与最佳实验结果相符。在本文中,我们重新考虑了该模型中的体积依赖性。我们首先认为,应该使用代表振动能量被困住的体积的声学体积,而不是电极之间的几何体积。然后,我们表明,由于谐振器的品质因数与其厚度存在隐含的依赖性,汉德尔公式的净效应并非如人们天真预期的那样,噪声与谐振器厚度成正比增加,而是厚度增加时噪声净减少。最后,我们表明,绘制Q(4)Sy与声学体积的关系图,而不是通常的Sy图,可能有助于比较具有非常不同谐振频率的声学谐振器的品质。