Relative performance of spiral scan over raster scan in the AFM imaging

M. S. Rana, H. Pota, I. Petersen
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Abstract

In this paper, we first consider the use of a spiral rather than the conventional raster scanning method for improving the imaging performance of an atomic force microscope (AFM). To generate spirals, single-frequency, slowly varying amplitude sine and cosine waves are applied to the X- and Y-piezos, respectively, of the piezoelectric tube scanner (PTS) of an AFM. To demonstrate the performance improvement with the spiral scanning method, a comparison of spiral and raster scanning techniques is presented. In each case, the closed-loop operation is performed using a multi-input multi-output (MIMO) model predictive control (MPC) scheme augmented with a vibration compensator to minimize the tracking error.
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螺旋扫描与光栅扫描在AFM成像中的相对性能
在本文中,我们首先考虑使用螺旋扫描而不是传统的光栅扫描方法来改善原子力显微镜(AFM)的成像性能。为了产生螺旋,将单频、缓慢变化振幅的正弦和余弦波分别应用于AFM的压电管扫描仪(PTS)的X和y压电。为了说明螺旋扫描方法在性能上的改进,对螺旋扫描和光栅扫描技术进行了比较。在每种情况下,采用多输入多输出(MIMO)模型预测控制(MPC)方案进行闭环操作,并增加振动补偿器以最小化跟踪误差。
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