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首页> 外文期刊>Nanotechnology >Higher modes of vibration increase mass sensitivity in nanomechanical microcantilevers
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Higher modes of vibration increase mass sensitivity in nanomechanical microcantilevers

机译:更高的振动模式提高了纳米机械微悬臂梁的质量敏感性

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We evaluated the potential and limitations of resonating nanomechanical microcantilevers for the detection of mass adsorption. As a test system we used mass addition of gold layers of varying thickness. Our main findings are: (1) A linear increase in mass sensitivity with the square of the mode number-a sensitivity increase of two orders of magnitude is obtained from mode 1 to mode 7 with a minimum sensitivity of 8.6 ag Hz(-1) mu m(-2) and mass resolution of 0.43 pg at mode 7 for a 1 mu m thick cantilever. (2) The quality factor increases with the mode number, thus helping to achieve a higher sensitivity. (3) The effective spring constant of the cantilever remains constant for deposition of gold layers up to at least 4% of the cantilever thickness.
机译:我们评估了共振的纳米机械微悬臂梁用于检测质量吸附的潜力和局限性。作为测试系统,我们使用了厚度可变的金层的批量添加。我们的主要发现是:(1)质量敏感度随模式数的平方线性增加-从模式1到模式7的敏感度增加了两个数量级,最小敏感度为8.6 ag Hz(-1) μm(-2),在模式7下,对于1μm厚的悬臂,质量分辨率为0.43 pg。 (2)品质因数随模式编号而增加,从而有助于实现更高的灵敏度。 (3)对于金层的沉积,悬臂的有效弹簧常数保持恒定,直至至少悬臂厚度的4%。

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