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Dynamics of probes attached to quartz tuning forks for the detection of surface forces

机译:用于探测表面力的连接到石英音叉的探针的动力学

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摘要

The dynamics of force microscopy probes attached to quartz tuning fork piezoelectric sensors has been investigated, by simply modeling the tuning fork/ probe system as two coupled damped harmonic oscillators. Depending on how probes are applied to the tuning fork prong, they could show appreciable compliance along the direction of approach to the surface. In particular, buckling or bending deformation of the probe may account for unexpectedly long interaction ranges found in experimental approach curves. Some peculiar curves found in the literature in the case of lateral probe oscillation ( shear force) are well reproduced by the present model. In particular, a 'clamping' effect is observed when the probe is substantially more compliant than the tuning fork. By calculating the actual probe motion along with the tuning fork response, the correct distance control operation regimes are pointed out for the shear- force case, even when using compliant probes. The model can be readily extended to the case of normal oscillation, at least for small amplitudes. Furthermore, it could be applied to a 'mixed' case of shear- force detection performed with very compliant probes. The present analysis can help to improve data interpretation and operation conditions in dynamic force microscopy and spectroscopy.
机译:通过简单地将音叉/探头系统建模为两个耦合的阻尼谐波振荡器,已经研究了连接到石英音叉压电传感器的力显微镜探头的动力学。取决于将探针应用于音叉尖头的方式,它们可能会在接近表面的方向上显示出明显的柔度。特别是,探头的屈曲或弯曲变形可能会导致在实验方法曲线中发现意外的长相互作用范围。本模型很好地再现了文献中在横向探头振荡(剪切力)情况下的一些特殊曲线。特别地,当探针比音叉更柔顺时,观察到“夹紧”效果。通过计算实际的探针运动以及音叉的响应,即使在使用兼容探针的情况下,也能为剪切力情况指出正确的距离控制操作方案。至少对于小振幅,该模型可以很容易地扩展到正常振荡的情况。此外,它可以应用于用非常柔顺的探头进行的“混合”剪切力检测。本分析可以帮助改善动态力显微镜和光谱学中的数据解释和操作条件。

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