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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Characterization of Distance-Dependent Damping in Tapping-Mode Atomic Force Microscopy Force Measurements in Liquid
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Characterization of Distance-Dependent Damping in Tapping-Mode Atomic Force Microscopy Force Measurements in Liquid

机译:液体中攻丝模式原子力显微镜力测量中距离相关阻尼的表征

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We have used a spectral analysis method to characterize changes in the local damping coefficient for an acoustically driven cantilever as it approaches a hard surface in liquid.We show a significant distance dependence of the damping coefficient (and associated quality factor)that must be accounted for to achieve successful theoretical reproduction of experimental tapping-mode force curves.We model the cantilever dynamics using a forced damped harmonic oscillator model and solve the equation of motion using the method of finite differences.Experiments in solutions of differing viscosities show that bulk viscous damping is not the source of the system dissipation,while simulations of the cantilever dynamics including adhesion hysteresis also eliminate this as the origin of the dissipation.We conclude that frictional dissipation that occurs with the intermittent contact is the likely source of dissipation in the system.Our results identify a semiquantitative means of interpreting tapping-mode force curves on nondeformable surfaces in liquid.
机译:我们使用频谱分析方法来表征声驱动悬臂接近液体中坚硬表面时局部阻尼系数的变化,我们显示出阻尼系数(和相关的品质因数)与距离之间的显着相关性,必须加以考虑为了获得理论上的攻丝模式力曲线的成功再现,我们使用强迫阻尼谐振子模型对悬臂动力学进行建模,并使用有限差分法求解运动方程。不同粘度溶液的实验表明,本体粘性阻尼为而不是系统耗散的来源,而对包括粘附滞后的悬臂动力学的仿真也消除了这种耗散的根源。我们得出结论,间歇性接触发生的摩擦耗散是系统中耗散的可能来源。确定解释敲击的半定量方法液体中不可变形表面上的模态力曲线。

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