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Dual-stage vertical feedback for high-speed scanning probe microscopy

机译:双级垂直反馈,用于高速扫描探针显微镜

摘要

Many popular modes of scanning probe microscopy require a vertical feedback system to regulate the tip-sample interaction. Examples include constant-current scanning tunneling microscopy and constant-force atomic force microscopy. Due to the control of tip-sample interaction, these modes of microscopy provide precise topographic information and result in drastically reduced sample damage, hence their popularity. Unfortunately the vertical feedback controller also imposes a severe limit on the scan-speed of scanning probe microscopes. In this paper, the foremost bandwidth limitation is identified to be the low-frequency mechanical resonances of the scanner. To overcome this limitation, a dual-stage vertical positioner is proposed. This comprises the original scanner, plus an additional high-speed stage. The improved bandwidth provided by the high-speed stage allows a vast improvement in feedback gain and bandwidth. In this work, the bandwidth is increased from 83 Hz to 2.7 kHz. This improvement allows image quality to be retained with a speed increase of 33 times, or alternatively, feedback error can be reduced by 33 times if scan speed is not increased. The techniques proposed are mechanically and electrically simple and can be retrofitted to any scanning probe microscope.
机译:扫描探针显微镜的许多流行模式都需要垂直反馈系统来调节针尖与样品的相互作用。例子包括恒流扫描隧道显微镜和恒力原子力显微镜。由于尖端样品相互作用的控制,这些显微镜模式提供了精确的地形信息,并大大减少了样品损伤,因此很受欢迎。不幸的是,垂直反馈控制器也对扫描探针显微镜的扫描速度施加了严格的限制。在本文中,最主要的带宽限制被确定为扫描仪的低频机械共振。为了克服该限制,提出了一种双级垂直定位器。这包括原始的扫描仪,以及一个额外的高速平台。高速级提供的改进的带宽可以极大地提高反馈增益和带宽。在这项工作中,带宽从83 Hz增加到2.7 kHz。这种改进允许以33倍的速度保持图像质量,或者,如果不提高扫描速度,则反馈误差可以减少33倍。所提出的技术在机械上和电气上都很简单,可以改装到任何扫描探针显微镜上。

著录项

  • 作者

    Fleming Andrew J.;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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