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A Calibration Method for the Higher Modes of a Micro-mechanical Cantilever

机译:微机械悬臂高模的标定方法

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摘要

Micro-mechanical cantilevers are increasingly being used as a characterisation tool in both material and biological sciences. New non-destructive applications are being developed that rely on the information encoded within the cantilever’s higher oscillatory modes, such as AFM techniques that measure non-topographic properties of a sample. However, these methods require the spring constants of the cantilever at higher modes to be known in order to quantify their results. Here, we show how to calibrate the micro-mechanical cantilever and find the effective spring constant of any mode. The method is uncomplicated to implement, using only properties of the cantilever and the fundamental mode that are straightforward to measure.
机译:在材料科学和生物科学中,微机械悬臂越来越多地用作表征工具。正在开发新的非破坏性应用程序,这些应用程序依赖于悬臂的较高振荡模式下编码的信息,例如用于测量样品非地形特性的AFM技术。但是,这些方法要求已知较高模式下的悬臂的弹簧常数,以便量化其结果。在这里,我们展示了如何校准微机械悬臂并找到任何模式的有效弹簧常数。仅使用易于测量的悬臂和基本模式的属性,即可轻松实现该方法。

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