Identification of multilayer structures using secondary electron yield curves: effect of native oxide films on EUV-patterned mask inspection

S. Iida, K. Ohya, R. Hirano, Hidehiro Watanabe
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引用次数: 1

Abstract

The impact of EUV mask surface conditions on the patterned mask inspection process was investigated. The results of simulations show that the defect detection capability is degraded by the formation of a native oxide film on the surface of a Ru capped multilayer. This effect was assessed by constructing the secondary electron yield (SEY) curves of the EUV mask materials. These experimentally-obtained SEY curves were examined using semi-empirical Monte Carlo simulations. The simulation results demonstrated that a native oxide film increased the SEY, and that this effect varied with film thickness. The results suggest that defect detection capability will vary according to the thickness of the native oxide when employing an inspection system using an electron beam technique. Also of interest is the finding that the thickness of the native oxide film can be ascertained by fitting the SEY curves.
利用二次电子产率曲线识别多层结构:原生氧化膜对euv图案掩膜检测的影响
研究了EUV掩模表面条件对图案掩模检测过程的影响。模拟结果表明,在覆钌多层材料表面形成天然氧化膜会降低缺陷检测能力。通过构建EUV掩膜材料的二次电子产率(SEY)曲线来评价这种效应。这些实验获得的SEY曲线使用半经验蒙特卡罗模拟进行了检验。模拟结果表明,天然氧化膜增加了SEY,并且这种效果随膜的厚度而变化。结果表明,当采用电子束技术的检测系统时,缺陷检测能力将根据天然氧化物的厚度而变化。同样令人感兴趣的是,可以通过拟合SEY曲线来确定天然氧化膜的厚度。
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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