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An alternative method to determining optical lever sensitivity in atomic force microscopy without tip-sample contact

机译:在没有尖端样品接触的情况下确定原子力显微镜中光杠杆灵敏度的另一种方法

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摘要

Force studies using atomic force microscopy generally require knowledge of the cantilever spring constants and the optical lever sensitivity. The traditional method of evaluating the optical lever sensitivity by pressing the tip against a hard surface can damage the tip, especially sharp ones. Here a method is shown to calculate the sensitivity without having to bring the tip into contact. Instead a sharpened tungsten wire is used to cause a point contact directly onto the cantilever and cause cantilever bending. Using beam theory, the sensitivity thus found can be converted to the equivalent sensitivity that would be obtained using the tip location. A comparison is presented between sensitivity values obtained from the conventional tip contact method and those derived from the wire-based technique for a range of cantilevers in air. It was found that the difference between the calculated sensitivity from the wire-based technique and the sensitivity obtained conventionally was less than 12%. These measurements indicate the presented method offers a simple alternative approach to obtain optical lever sensitivity without compromising the tip shape.
机译:使用原子力显微镜进行力研究通常需要了解悬臂弹簧常数和光杆灵敏度。通过将尖端压在坚硬的表面上来评估光学杠杆灵敏度的传统方法会损坏尖端,尤其是尖锐的尖端。此处显示了一种方法,可以在无需使笔尖接触的情况下计算灵敏度。取而代之的是使用尖锐的钨丝使点直接接触悬臂并引起悬臂弯曲。使用射束理论,可以将由此发现的灵敏度转换为使用尖端位置获得的等效灵敏度。比较了从传统的尖端接触方法获得的灵敏度值与从基于导线的技术得出的灵敏度值之间在空气中的一系列悬臂之间的比较。已经发现,基于线技术的计算出的灵敏度与常规获得的灵敏度之间的差小于12%。这些测量结果表明,所提出的方法提供了一种简单的替代方法,可在不影响尖端形状的情况下获得光杠杆灵敏度。

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