从AFM中的非光栅数据生成图像

P. Huang, S. Andersson
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引用次数: 9

摘要

原子力显微镜中的非光栅方法利用高水平的反馈控制来引导尖端,以便只采样感兴趣的区域。非光栅法虽然可以减少采样量,减少扫描时间,但测量位置不再均匀分布。因此,从数据中产生准确的图像是一个非常重要的问题。本文提出了一种基于克里格空间插值理论的非栅格数据生成忠实于样本的图像的方法。该方法经过修改,可以很好地与一位作者先前开发的一种特定的非光栅方法一起工作。然而,克里金的主要缺点之一是它的计算成本。由于算法速度太慢,无法实时使用,我们还描述了Delaunay三角剖分在图像生成中的应用。虽然不如克里格法精确,但三角测量法的速度足够快,可以实时生成图像,并在图像处理过程中为用户提供视觉反馈。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Generating images from non-raster data in AFM
Non-raster methods in atomic force microscopy utilize high-level feedback control to steer the tip in order to sample only regions of interest. Although the non-raster method can reduce the scanning time by gathering fewer samples, the measurement locations are no longer uniformly distributed. As a result, the production of accurate images from the data is a non-trivial problem. This paper presents a method of generating images that faithfully represent the sample from the non-raster data based on Kriging spatial interpolation theory. The method is modified to work well with a particular non-raster method developed previously by one of the authors. One of the primary drawbacks of Kriging, however, is its computational cost. As the algorithm is too slow for real time use, we also describe the use Delaunay triangulation for image generation. While less accurate than Kriging, triangulation is fast enough to produce images in real time, providing visual feedback to the user during the image process.
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