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Voice coil-based scanning probe microscopy

机译:基于音圈的扫描探针显微镜

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摘要

We present a novel system for large-area scanning probe microscopy (SPM) measurements based on minimum counter-force linear guidance mechanisms, voice coils, interferometers and fuzzy logic-based feedback loop electronics. It is shown that voice coil-based actuation combined with interferometry can be a good alternative to piezoceramic positioning systems, providing fast and still sufficient, precise displacements which range from nanometers to millimeters. Using fuzzy logic feedback control, it can be actuated even with only a few low-cost components, like a cheap single-chip microcontroller. As the final positioning resolution can be made independent on the electronics output resolution, the system can reach high positioning resolution even on very large scan sizes. This is a key prerequisite for developing novel generations of SPMs that would combine, in a very large range, with high-speed imaging.
机译:我们提出了一种基于最小反作用力线性引导机制,音圈,干涉仪和基于模糊逻辑的反馈回路电子学的大面积扫描探针显微镜(SPM)测量的新颖系统。结果表明,基于音圈的致动与干涉测量相结合可以很好地替代压电陶瓷定位系统,从而提供快速且仍然足够精确的位移,位移范围从纳米到毫米。使用模糊逻辑反馈控制,即使只有很少的低成本组件(例如便宜的单芯片微控制器)也可以启动它。由于可以使最终定位分辨率与电子输出分辨率无关,因此即使在非常大的扫描尺寸下,系统也可以达到较高的定位分辨率。这是开发新一代SPM的关键前提,这些SPM将在很大范围内与高速成像相结合。

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