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Force reconstruction from tapping mode force microscopy experiments

机译:通过敲击模式力显微镜实验进行力重建

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摘要

Fast, accurate, and robust nanomechanical measurements are intensely studied in materials science, applied physics, and molecular biology. Amplitude modulation force microscopy (tapping mode) is the most established nanoscale characterization technique of surfaces for air and liquid environments. However, its quantitative capabilities lag behind its high spatial resolution and robustness. We develop a general method to transform the observables into quantitative force measurements. The force reconstruction algorithm has been deduced on the assumption that the observables (amplitude and phase shift) are slowly varying functions of the tip-surface separation. The accuracy and applicability of the method is validated by numerical simulations and experiments. The method is valid for liquid and air environments, small and large free amplitudes, compliant and rigid materials, and conservative and non-conservative forces.
机译:在材料科学,应用物理学和分子生物学中,对快速,准确和健壮的纳米力学测量进行了深入研究。调幅力显微镜(敲击模式)是用于空气和液体环境的表面最成熟的纳米级表征技术。但是,其定量功能落后于其高空间分辨率和鲁棒性。我们开发了一种将可观测值转换为定量力测量值的通用方法。推力重建算法是基于这样的假设得出的:可观察到的(振幅和相移)是尖端表面分离的缓慢变化的函数。通过数值模拟和实验验证了该方法的准确性和适用性。该方法适用于液体和空气环境,较小和较大的自由振幅,顺应性和刚性材料以及保守和非保守力。

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