DocumentCode
2383590
Title
Study on the use of RET for improvement of dof in sub-via contact holes to severe topography
Author
Park, Jung-ho ; Ha, Hyun-ji ; Jang, Yong-hwan ; Moon, In-kyu ; Jung, Chang-hwan ; Lee, Yeon-ho
Author_Institution
Memory Manuf. Oper. Center, Samsung Electron. Co..Ltd., Yongin, South Korea
fYear
2012
fDate
13-16 May 2012
Firstpage
103
Lastpage
106
Abstract
This paper investigates the application of resolution enhancement techniques for 140nm back-end via2 contact hole process with KrF system. On bare wafer, 120nm DoF (depth of focus) is secured for via2 process. However, different focal plane are formed due to the severe topography between cell and other region. And DOF of isolated contact hole is less than dense pattern. These factors lowered the overall DOF from 120nm to only about 80nm and raise many problems. Therefore, enhancement of aerial image is needed to improve DOF. In this study, mask type, mask layout, OAI (Off axis illumination) and SRAF (sub resolution assist feature) are applied all together in developed sequence. Because the isolated pattern and dense pattern are coexisted in via2 process, illumination and layout of mask are considered all at once. By using source mask optimization (SMO), optimum illumination and proper SRAF rule are developed and optimized. Through these processes, we obtain improvement of process window in comparison with existing condition. Furthermore coincidence of best focus is assured in real image on real conditioned wafer.
Keywords
focal planes; image enhancement; image resolution; integrated circuit interconnections; krypton compounds; photolithography; surface topography; DOF; KrF; OAI; RET; SRAF; aerial image enhancement; back-end via2 contact hole process; depth of focus; focal plane; mask layout; mask type; off axis illumination; photolithography; resolution enhancement techniques; size 140 nm; source mask optimization; sub resolution assist feature; sub-via contact holes; topography; Image resolution; Imaging; Layout; Lighting; Lithography; Optimization; Resists;
fLanguage
English
Publisher
ieee
Conference_Titel
Microelectronics (MIEL), 2012 28th International Conference on
Conference_Location
Nis
ISSN
pending
Print_ISBN
978-1-4673-0237-1
Type
conf
DOI
10.1109/MIEL.2012.6222807
Filename
6222807
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