Paper
20 March 2020 Contour extraction algorithm for edge placement error measurement using machine learning
Yosuke Okamoto, Shinichi Nakazawa, Akinori Kawamura, Tsugihiko Haga, Taihei Mori, Kotaro Maruyama, Seul-Ki Kang, Yuichiro Yamazaki
Author Affiliations +
Abstract
The accurate and precise contour extraction on SEM image is important to measure overlay, improve OPC model, inspect tiny hot-spot, and so on. In 2019, we reported about the measurement repeatability of edge placement error (EPE) with Die-to-Database (D2DB) algorithm. In this study, we apply machine learning for the contour extraction to improve the measurement throughput with high accuracy and precision of EPE on 2D pattern. The pattern contour on SEM image can be extracted by processing gray-level profile data across the measurement line. Generally, in order to extract the precise contour, the direction of the profile should be perpendicular to the pattern contour. Although the direction used to be determined by the design pattern, it can’t be accurate enough to extract the contour exactly since the shape between the design pattern and the actual pattern are different. We propose the method that determines the direction of the profile acquisition using the contour taken by machine learning, which is more similar to the actual pattern contour than the design pattern contour. The accuracy and the precision of EPE measurement using the contour extracted by our method has been improved in actual SEM images captured repeatedly.
© (2020) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Yosuke Okamoto, Shinichi Nakazawa, Akinori Kawamura, Tsugihiko Haga, Taihei Mori, Kotaro Maruyama, Seul-Ki Kang, and Yuichiro Yamazaki "Contour extraction algorithm for edge placement error measurement using machine learning", Proc. SPIE 11325, Metrology, Inspection, and Process Control for Microlithography XXXIV, 113252A (20 March 2020); https://doi.org/10.1117/12.2553663
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KEYWORDS
Scanning electron microscopy

Computer aided design

Machine learning

Edge detection

Precision measurement

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