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Influence of the cantilever holder on the vibrations of AFM cantilevers

机译:悬臂支架对AFM悬臂振动的影响

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摘要

Dynamic techniques exploiting the vibration of atomic force microscope (AFM) cantilevers are often superior to quasi-static operation, in particular with respect to the signal-to-noise ratio. Tapping mode, magnetic force microscopy or torsional resonance (TR)-mode for example exploit the resonance amplification of bending or torsional modes of the cantilever. In atomic force acoustic microscopy (AFAM) and related techniques aiming to measure elasticity or adhesion quantitatively on a nanometre scale, the cantilever vibrates while the tip is in contact with a sample surface. The higher vibration modes are included in the evaluation. Well-defined resonance maxima of the cantilever are a prerequisite for all resonance techniques. To allow their handling, microscaled commercial cantilevers are fabricated in one piece with a holder of millimetre dimensions providing the base to which the cantilever beam is suspended. Here, we examine experimentally and theoretically how the cantilever holder influences the vibration of the cantilevers.
机译:利用原子力显微镜(AFM)悬臂振动的动态技术通常优于准静态操作,特别是在信噪比方面。敲击模式,磁力显微镜或扭转共振(TR)模式例如利用悬臂的弯曲或扭转模式的共振放大。在旨在以纳米级定量测量弹性或粘附力的原子力声学显微镜(AFAM)和相关技术中,悬臂在尖端与样品表面接触时振动。更高的振动模式包含在评估中。明确定义的悬臂共振最大值是所有共振技术的前提。为了便于操作,将微型商用悬臂制成一件,带有毫米尺寸的支架,为悬臂梁提供了悬挂基础。在这里,我们从实验和理论上研究悬臂支架如何影响悬臂的振动。

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