Depth Estimation from a Single CD-SEM Image Using Domain Adaptation with Multimodal Data

Tim Houben, Thomas Huisman, Maxim Pisarenco, Fons van der Sommen, Peter de With

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Abstract

There is a growing need for accurate depth measurements of on-chip structures, fueled by the ongoing size reduction of integrated circuits. However, current metrology methods do not offer a satisfactory solution. As Critical Dimension Scanning Electron Microscopes (CD-SEMs) are already being used for fast and local 2D imaging, it would be beneficial to leverage the 3D information hidden in these images. In this paper, we present a method that can predict depth maps from top-down CD-SEM images. We demonstrate that the proposed neural network architecture, together with a tailored training procedure, leads to accurate depth predictions on synthetic and real experimental data. Our training procedure includes a domain adaptation step, which utilizes data from a different modality (scatterometry), in the absence of ground-truth data in the experimental CD-SEM domain. The mean relative error of the proposed method is smaller than 6.2% on a contact-hole dataset of synthetic CD-SEM images with realistic noise levels. Furthermore, we show that the method performs well in terms of important semiconductor metrics. To the extent of our knowledge, we are the first to achieve accurate depth estimation results on experimental data, by combining data from the aforementioned modalities. We achieve a mean relative error smaller than 1%.

Original languageEnglish
Title of host publicationFourteenth International Conference on Machine Vision, ICMV 2021
EditorsWolfgang Osten, Dmitry Nikolaev, Jianhong Zhou
PublisherSPIE
Pages1-9
Number of pages9
ISBN (Electronic)9781510650459
ISBN (Print)9781510650442
DOIs
Publication statusPublished - 2022
Event14th International Conference on Machine Vision, ICMV 2021 - Rome, Italy
Duration: 8 Nov 202112 Nov 2021

Publication series

NameProceedings of SPIE - The International Society for Optical Engineering
Volume12084
ISSN (Print)0277-786X
ISSN (Electronic)1996-756X

Conference

Conference14th International Conference on Machine Vision, ICMV 2021
Country/TerritoryItaly
CityRome
Period8/11/2112/11/21

Keywords

  • 3D
  • CD-SEM images
  • CNN
  • deep learning
  • domain adaptation
  • monocular depth estimation
  • optical critical dimension
  • scatterometry
  • weakly supervised learning

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