Zugriffsnummer 28058
Dokumenttyp Zeitschriftenartikel
Sprache Englisch
Titel Analytical modeling and three-dimensional finite element simulation of line edge roughness in scatterometry
Autor(in); Institution
Kato, Akiko; Hochschule Ruhr West-University of Applied Science, Mülheim a.d. Ruhr, GERMANY
Burger, Sven; Zuse Institute Berlin (ZIB), Berlin, GERMANY; JCMwave GmbH, Berlin, GERMANY
Scholze, Frank; 7.1, Radiometrie mit Synchrotronstrahlung, PTB-Berlin
Quelle/Jahr Applied Optics: 51 (2012), 27, 6457 - 6464
ISSN 1559-128X (PRINT) ; 1539-4522 (ONLINE)
DOI
Verlag Washington, DC: Optical Society of America
Klassifikationscode OCIS: 290.5820 ; OCIS: 290.5825 ; OCIS: 290.5820 ; OCIS: 120.6660
Zusammenfassung The influence of edge roughness in angle-resolved scatterometry at periodically structured surfaces is investigated. A good description of the radiation interaction with structured surfaces is crucial for the understanding of optical imaging processes such as, e.g., in photolithography.We compared an analytical two-dimensional (2D) model and a numerical three-dimensional simulation with respect to the characterization of 2D diffraction of a line grating involving structure roughness. The results show a remarkably high agreement. The diffraction intensities of a rough structure can therefore be estimated using the numerical simulation result of an undisturbed structure and an analytically derived correction function. This work allows to improve scatterometric results for the case of practically relevant 2D structures.

Zitierung

Kato, A., Burger, S., & Scholze, F. (2012). Analytical modeling and three-dimensional finite element simulation of line edge roughness in scatterometry. Applied Optics, 51(27), 6457–6464. https://doi.org/10.1364/ao.51.006457

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