Non-Contact Dynamic Mode Atomic Force Microscope : Effects of nonlinear atomic forces

S. Das, P. Sreeram, A. Raychaudhuri, T. Sai, L. Brar
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引用次数: 7

Abstract

We present an experimental investigation of the variation of the amplitude of vibrating microcantilever, as a function of distance (h) between the microcantilever and the sample in a Dynamic Force Microscopy (DFM) and explain the observations with a theoretical model. In DFM, as the cantilever tip approaches the sample, neither the force nor the response of the cantilever is in the linear regime. We present an exact numerical solution to the equation of motion of the oscillations of the microcantilever and present a quantitative explanation to the observed force versus distance curves, in terms of the resonance curves. We show that the change in the resonance frequency of the cantilever due to the atomic forces is highly nonlinear.
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非接触动态模式原子力显微镜:非线性原子力的影响
我们在动态力显微镜(DFM)中对微悬臂梁振动振幅的变化进行了实验研究,作为微悬臂梁与样品之间距离(h)的函数,并用理论模型解释了观察结果。在DFM中,当悬臂梁尖端靠近试样时,悬臂梁的力和响应都不处于线性状态。我们提出了微悬臂梁振荡运动方程的精确数值解,并根据共振曲线对观察到的力与距离曲线进行了定量解释。结果表明,原子力对悬臂梁谐振频率的影响是高度非线性的。
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