论文标题

揭开周期结构的测量

Demystifying the measurement of periodic structures

论文作者

Nečas, David, Yacoot, Andrew, Klapetek, Petr

论文摘要

经常在纳米科学和纳米技术的各个领域中发现周期性结构,其中许多被用于校准仪器,或者形成测量设备(例如编码器)的基础。根据地形测量评估一或二维周期结构的周期,例如使用扫描探针显微镜(SPM)方法进行的,可以使用过去提出的许多光栅评估方法的不同方法来实现,并应用于少数示例。确定光向音高的最佳方法并不明显。本文报告了广泛的大规模模拟和分析的结果,以评估直接空间数据处理方法的性能。在不同的测量条件下,已经在各种不同的光栅上进行了数千次模拟,包括对现实生活中遇到的缺陷的模拟。本文总结了该方法的优点和缺点,以及针对周期结构的测量以及开发用于处理它们的算法的实用建议。

Periodic structures are often found in various areas of nanoscience and nanotechnology with many of them being used for metrological purposes either to calibrate instruments, or forming the basis of measuring devices such as encoders. Evaluating the period of one or two-dimensional periodic structures from topography measurements, e.g. performed using scanning probe microscopy (SPM) methods, can be achieved using different methodologies with many grating evaluation methods having been proposed in the past and applied to a handful of examples. The optimum methodology for determining the grating pitch is not immediately obvious. This paper reports the results of extensive large-scale simulations and analysis to evaluate the performance of both direct and Fourier space data processing methods. Many thousands of simulations have been performed on a variety of different gratings under different measurement conditions and including the simulation of defects encountered in real life situations. The paper concludes with a summary of the merits and disadvantages of the methods together with practical recommendations for the measurements of periodic structures and for developing algorithms for processing them.

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