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  4. Multilayer bottom antireflective coatings for high numerical aperture and modified illumination exposure systems
 
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Multilayer bottom antireflective coatings for high numerical aperture and modified illumination exposure systems

Journal
2002 International Microprocesses and Nanotechnology Conference, MNC 2002
Pages
62-63
Date Issued
2002
Author(s)
Chen, H.L.
Fan, W.
Wang, T.J.
Ko, F.H.
Hsieh, C.I.
HSUEN-LI CHEN  
DOI
10.1109/IMNC.2002.1178544
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/491387
URL
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84960382456&doi=10.1109%2fIMNC.2002.1178544&partnerID=40&md5=f171e35a3e58a8714f5ee842b7f1cea7
Abstract
To achieve increasing resolution of optical lithography, exposure systems with a high numerical aperture (NA) are essential. The efficiency of the conventional single-layer bottom antireflective coating (BARC) structure will degrade as the incidence angle increases. This is because the reflectance at the resist/substrate interface increases in the large incident-angle regime. Here we demonstrate a multilayer BARC structure for high-NA and modified illumination exposure systems in ArF and F2 lithographies. The multilayer antireflective structure is composed of conventional silicon oxynitride films. By adding an optimized structure, the reflectance can be maintained below 1% at a resist/high reflective substrate interface for the incident angles from 0 to 53 des (i.e. numerical aperture ∼0.8). The swing effect, in the resist is also shown to be significantly reduced.
Subjects
ArF and F2 lithography; Bottom antireflective coatings; High numerical aperture; Modified illumination; Multilayer
Other Subjects
Lighting; Multilayers; Optimization; Photolithography; Numerical aperture (NA); Antireflection coatings
Type
conference paper

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