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Bi-stability of amplitude modulation AFM in air: Deterministic and stochastic outcomes for imaging biomolecular systems

机译:空气中调幅AFM的双稳定性:生物分子系统成像的确定性和随机结果

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The dynamics of the oscillating microcantilever for amplitude modulation atomic force microscopy (AM AFM) operating in air is well understood theoretically but the experimental outcomes are still emerging. We use double-stranded DNA on mica as a model biomolecular system for investigating the connection between theory and experiment. A demonstration that the switching between the two cantilever oscillation states is stochastic in nature is achieved, and it can be induced by means of topographical anomalies on the surface. Whether one or the other attractor basin is accessed depends on the tip-sample separation history used to achieve the imaging conditions, and we show that the behaviour is reproducible when the tip is stable and well characterized. Emergence of background noise occurs in certain regions of parameter space regardless of whether two cantilever oscillation states coexist. The low state has been explored in detail and we note that at low to intermediate values of the free amplitude, noise-free imaging is achieved. The outcomes shown here are general and demonstrate that a thorough and systematic experimental approach in conjunction with standard modelling gives insight into the mechanisms behind image contrast formation in AM AFM in air.
机译:理论上已经很好地了解了在空气中工作的振幅调制原子力显微镜(AM AFM)的振荡微悬臂梁的动力学特性,但实验结果仍在不断涌现。我们使用云母上的双链DNA作为模型生物分子系统来研究理论与实验之间的联系。证明了两个悬臂振荡状态之间的切换本质上是随机的,并且可以通过表面上的形貌异常来引发这种切换。是否进入一个吸引盆或另一个吸引盆取决于用于实现成像条件的针尖样品分离历史,并且我们证明,当针尖稳定且特性良好时,行为是可重现的。不管两个悬臂振荡状态是否共存,背景噪声都会在参数空间的某些区域中发生。已对低状态进行了详细探讨,我们注意到,在自由振幅的中低值处,可以实现无噪声成像。此处显示的结果是一般性的,并且表明与标准建模相结合的全面而系统的实验方法可以洞察空气中AM AFM中形成图像对比度的机制。

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