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首页> 外文期刊>International journal of non-linear mechanics >Bifurcations and chaos in vibrating microcantilevers of tapping mode atomic force microscopy
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Bifurcations and chaos in vibrating microcantilevers of tapping mode atomic force microscopy

机译:敲击模式原子力显微镜振动微悬臂梁中的分叉和混沌

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We study the dynamics of a microcantilever in tapping mode atomic force microscopy when it is close to the sample surface and the van der Waals force has an important influence. Utilizing the averaging method, the extended version of the subharmonic Melnikov method and the homoclinic Melnikov method, we show that abundant bifurcation behavior and chaotic motions occur in vibrations of the microcantilever. In particular, in the subharmonic Melnikov analyses, a degenerate resonance is treated appropriately. Necessary computations for the subharmonic and homoclinic Melnikov methods are performed numerically. Numerical bifurcation analyses and numerical simulations are also given to demonstrate the theoretical results.
机译:在攻丝模式原子力显微镜下,当样品靠近样品表面并且范德华力具有重要影响时,我们研究了微悬臂梁的动力学。利用平均法,次谐波梅尔尼科夫方法的扩展版本和同斜度梅尔尼科夫方法,我们证明了在微悬臂梁的振动中会发生大量的分叉行为和混沌运动。特别是,在亚谐波Melnikov分析中,对简并共振进行了适当处理。数值计算了次谐波和同斜Melnikov方法的必要计算。数值分叉分析和数值模拟也被用来证明理论结果。

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