具有低非线性响应起始的多晶金刚石圆形谐振膜片

A. C. Barnes, C. Zorman
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引用次数: 1

摘要

在本文中,我们报告了一项初步研究的结果,以表征超薄,大面积,圆形多晶金刚石隔膜作为谐振传感器的潜在结构材料的共振行为。在低kHz到1 MHz的激励频率范围内,测量了硅衬底膜片的谐振响应。由于高宽高比、高杨氏模量和高质量因数,谐振在非常低的驱动电压下进入非线性Duffing状态。这种非线性行为以其在参数激励中的应用而闻名,允许在许多领域的有趣应用,包括量子光学和等离子体物理。与膜理论相比,由于宽高比和高杨氏模应力比,发现较高的共振模中心频率偏离预期频率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Polycrystalline diamond circular resonant diaphragms with low onset of nonlinear response
In this paper, we report the results of an initial study to characterize the resonance behavior of ultra-thin, large area, circular polycrystalline diamond diaphragms as a potential structural material for resonant sensors. The resonant response of the diaphragms fabricated on Si substrates was measured for excitation frequencies from the low kHz to 1 MHz. Due to the large aspect ratio, a high Young's modulus and high quality factors, resonances enter the nonlinear Duffing regime at very low drive voltages. This nonlinear behavior is known for its use in parametric excitation, allowing for interesting applications in many areas, including quantum optics and plasma physics. Higher resonance mode center frequencies were found to deviate from expected frequencies when compared to membrane theory due to the large aspect ratio and high Young's modulus-to-stress ratio.
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