Control of a high-speed nanopositioner for Lissajous-scan video-rate AFM

Y. Yong, A. Bazaei, S. Moheimani
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引用次数: 4

Abstract

Conventionally, raster-based trajectory is used in atomic force microscopy (AFM) for scanning applications. A triangle reference, which is one of the two input signals used to construct the raster trajectory, contains high order harmonics of its fundamental frequency that can excite the mechanical resonant modes of a nanopositioner. To achieve video-rate scanning, high-bandwidth nanopositioners with lateral dominant modes above 20 kHz are often required when using the raster-pattern in order to avoid vibrations. In this paper, we achieve video-rate scanning on a 11.3-kHz nanopositioner using a smooth scan trajectory known as Lissajous-scan pattern. The Lissajous trajectory can be constructed by tracking two monotonic sinusoidal waveforms on the lateral axes of the nanopositioner. Using the internal model (IM) controllers, good tracking performance of 2-kHz sinusoids was achieved. High-quality AFM images of a calibration specimen were successfully recorded at 18 frames/s using the proposed Lissajous trajectory and control strategies.
利萨尤扫描视频速率AFM高速纳米对位器的控制
传统上,基于光栅的轨迹用于原子力显微镜(AFM)的扫描应用。作为构建光栅轨迹的两个输入信号之一,三角形参考信号包含基频的高次谐波,可以激发纳米逆变器的机械谐振模式。为了实现视频速率扫描,在使用光栅模式时,通常需要具有20 kHz以上横向主导模式的高带宽纳米对位器,以避免振动。在本文中,我们使用称为lissajous扫描模式的平滑扫描轨迹在11.3 khz纳米对位器上实现视频速率扫描。利萨轨迹可以通过跟踪纳米对偶器侧轴上的两个单调正弦波形来构造。采用内模(IM)控制器,实现了对2khz正弦波的良好跟踪性能。采用所提出的Lissajous轨迹和控制策略,以18帧/秒的速度成功记录了校准样品的高质量AFM图像。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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