Zugriffsnummer 22653
Dokumenttyp Konferenzartikel
Sprache Englisch
Titel Metrology of EUV masks by EUV-scatterometry and finite element analysis
Autor(in); Institution
Pomplun, Jan; Zuse Institut, Berlin, GERMANY; JCMwave GmbH, Putzbrunn, GERMANY
Burger, Sven; Zuse Institut, Berlin, GERMANY; JCMwave GmbH, Putzbrunn, GERMANY
Schmidt, Frank; Zuse Institut, Berlin, GERMANY; JCMwave GmbH, Putzbrunn, GERMANY
Scholze, Frank; 7.1, Photonenradiometrie, PTB-Berlin
Laubis, Christian; 7.1, Photonenradiometrie, PTB-Berlin
Dersch, Uwe; Advanced Mask Technology Center GmbH, Dresden, GERMANY
Quelle/Jahr Photomask and Next-Generation Lithography Mask Technology XV:(2008), 7028P-1 - 7028P-12
Schriftenreihe Proceedings of SPIE: 7028
Herausgeber(in)
Horiuchi, Toshiyuki
ISBN 978-0-8194-7243-4
DOI
Verlag Bellingham, Wash.: SPIE
Konferenzangaben Photomask and Next-Generation Lithography Mask Technology XV, Yokohama, 16 April 2008, Japan
Freie Schlagworte EUV ; mask ; metrology ; photolithography ; FEM
Zusammenfassung Extreme ultraviolet (EUV) lithography is seen as a main candidate for production of future generation computer technology. Due to the short wavelength of EUV light (≈ 13 nm) novel reflective masks have to be used in the production process. A prerequisite to meet the high quality requirements for these EUV masks is a simple and accurate method for absorber pattern profile characterization. In our previous work we demonstrated that the Finite Element Method (FEM) is very well suited for the simulation of EUV scatterometry and can be used to reconstruct EUV mask profiles from experimental scatterometric data. In this contribution we apply an indirect metrology method to periodic EUV line masks with different critical dimensions (140 nm and 540 nm) over a large range of duty cycles (1:2, ... , 1:20). We quantitatively compare the reconstructed absorber pattern parameters to values obtained from direct AFM and CD-SEM measurements. We analyze the reliability of the reconstruction for the given experimental data. For the CD of the absorber lines, the comparison shows agreement of the order of 1nm. Furthermore we discuss special numerical techniques like domain decomposition algorithms and high order finite elements and their importance for fast and accurate solution of the inverse problem.

Zitierung

Pomplun, J., Burger, S., Schmidt, F., Scholze, F., Laubis, C., & Dersch, U. (2008). Metrology of EUV masks by EUV-scatterometry and finite element analysis. Photomask and Next-Generation Lithography Mask Technology XV, Yokohama, 16 April 2008, Japan. https://doi.org/10.1117/12.793032

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