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Stability considerations and implementation of cantilevers allowing dynamic force microscopy with optimal resolution: the qPlus sensor

机译:稳定性考虑因素和悬臂的实现,允许动态力显微镜具有最佳分辨率:qPlus传感器

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摘要

In frequency modulation atomic force microscopy, the stiffness, quality factor and oscillation amplitude of the cantilever are important parameters. While the first atomic resolution results were obtained with amplitudes of a few hundred angstrom, it has subsequently been shown that smaller amplitudes should result in a better signal-to-noise ratio and an increased sensitivity to the short-range components of the tip-sample interaction. Stable oscillation at small amplitudes is possible if the product of stiffness and amplitude and the energy stored in the oscillating cantilever are large enough. For small amplitudes, stability can be achieved by using stiff cantilevers. Here, we discuss the physical requirements for small amplitude operation and present design criteria and technical details of the qPlus sensor, a self-sensing cantilever with large stiffness that allows small amplitude operation.
机译:在调频原子力显微镜中,悬臂的刚度,品质因数和振荡幅度是重要的参数。虽然获得的第一原子分辨率结果的振幅为几百埃,但随后表明,较小的振幅应导致更好的信噪比和对尖端样品近距离成分的灵敏度提高。相互作用。如果刚度和振幅与存储在振荡悬臂中的能量的乘积足够大,则在小振幅下可能会出现稳定的振荡。对于小振幅,可以通过使用刚性悬臂来实现稳定性。在这里,我们讨论小幅度操作的物理要求,并介绍qPlus传感器的设计标准和技术细节,qPlus传感器是一种具有大刚度的自感测悬臂,允许小幅度操作。

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