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The impact of electrode materials on 1/f noise in piezoelectric AlN contour mode resonators

机译:电极材料对压电ALN轮廓模式谐振器1 / f噪声的影响

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摘要

This paper presents a detailed analysis on the impact of electrode materials and dimensions on flicker frequency (1/f) noise in piezoelectric aluminum nitride (AlN) contour mode resonators (CMRs). Flicker frequency noise is a fundamental noise mechanism present in any vibrating mechanical structure, whose sources are not generally well understood. 1 GHz AlN CMRs with three different top electrode materials (Al, Au, and Pt) along with various electrode lengths and widths are fabricated to control the overall damping acting on the device. Specifically, the use of different electrode materials allows control of thermoelastic damping (TED), which is the dominant damping mechanism for high frequency AlN CMRs and largely depends on the thermal properties (i.e. thermal diffusivities and expansion coefficients) of the metal electrode rather than the piezoelectric film. We have measured Q and 1/f noise of 68 resonators and the results show that 1/f noise decreases with increasing Q, with a power law dependence that is about 1/Q4. Interestingly, the noise level also depends on the type of electrode materials. Devices with Pt top electrode demonstrate the best noise performance. Our results help unveiling some of the sources of 1/f noise in these resonators, and indicate that a careful selection of the electrode material and dimensions could reduce 1/f noise not only in AlN-CMRs, but also in various classes of resonators, and thus enable ultra-low noise mechanical resonators for sensing and radio frequency applications.
机译:本文介绍了电极材料对压电铝(ALN)轮廓模式谐振器(CMRS)中的闪烁频率(1 / F)噪声对闪烁频率(1 / f)噪声的影响的详细分析。闪烁的频率噪声是一种在任何振动机械结构中存在的基本噪声机制,其来源通常不太了解。 1 GHz ALN CMRS具有三种不同的顶电极材料(Al,Au和Pt)以及各种电极长度和宽度,以控制在装置上的整体阻尼。具体地,使用不同电极材料允许控制热弹性阻尼(TED),这是高频ALN CMRS的主要阻尼机构,并且主要取决于金属电极的热特性(即热扩散率和膨胀系数)而不是压电薄膜。我们已经测量了68个谐振器的Q和1 / f噪声,结果表明,随着Q的增加,1 / F噪声减少,电力律依赖性约为1 / Q4。有趣的是,噪声水平还取决于电极材料的类型。具有PT顶电极的设备展示了最佳噪声性能。我们的结果有助于揭示这些谐振器中的一些1 / f噪声的源,并表明仔细选择电极材料和尺寸可能不仅在ALN-CMRS中减少1 / F噪声,而且还可以在各种谐振器中减少1 / F噪声,因此,实现超低噪声机械谐振器,用于感测和射频应用。

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