Controller synthesis for stabilizing oscillations in tapping-mode atomic force microscopes

M. Basso, G. Bagni
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引用次数: 10

Abstract

The atomic force microscope operating in tapping-mode can be properly described by a sinusoidally forced second order mechanical oscillator, which is nonlinearly interacting with the sample. Due to interaction forces, which strongly depend on the separation between the AFM tip and the sample profile, the cantilever oscillations may present chaotic behaviors, rising when the separation decreases. The stabilization of such periodic solutions is critical for achieving the correct sample topography. In this work, an LMI-based synthesis technique is proposed for determining the controller which guarantees stability of the cantilever oscillation for a wider range of tip-sample separations, thus eliminating unwanted complex dynamics
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攻模原子力显微镜稳定振荡的控制器合成
原子力显微镜工作在轻敲模式下,可以用一个与样品非线性相互作用的正弦强迫二阶机械振荡器来恰当地描述。由于相互作用力的存在,在很大程度上依赖于AFM尖端与样品轮廓之间的分离,悬臂振动可能呈现混沌行为,当分离减小时,悬臂振动会上升。这种周期解的稳定性对于获得正确的样品形貌是至关重要的。在这项工作中,提出了一种基于lmi的合成技术来确定控制器,该控制器可以保证在更大范围的尖端样品分离中悬臂振荡的稳定性,从而消除不必要的复杂动力学
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