DocumentCode
992915
Title
Engineering S/D diffusion for sub-100-nm channel SOI MOSFETs
Author
Kawamoto, Akihiro ; Sato, Shingo ; Omura, Yasuhisa
Author_Institution
High-Technol. Res. Center, Kansai Univ., Osaka, Japan
Volume
51
Issue
6
fYear
2004
fDate
6/1/2004 12:00:00 AM
Firstpage
907
Lastpage
913
Abstract
This paper discusses the importance of controlling the lateral diffusion of impurities around the source and drain (S/D) junctions in sub-100-nm channel single-gate silicon-on-insulator (SOI) MOSFETs. Since any reduction in lateral diffusion length must consider the tradeoff between drivability and short-channel effect with regard to the threshold voltage, optimization of lateral diffusion length is essential in the device design stage. We note that the net performance improvement offered by device-scaling is quite limited, even if lateral diffusion length is optimized in some way. It seems obvious that high-κ materials are needed in order to improve net device performance in the sub-100-nm technology regime. In addition, with regard to the impact of the thermal budget on lateral diffusion control, new doping materials such as Sb and In, will be required in the near future. In the case of nMOSFET, however, advanced structures, such as an elevated layer, and advanced annealing process are needed to provide enhanced control of S/D diffusion regions.
Keywords
MOSFET; annealing; diffusion; elemental semiconductors; semiconductor device models; semiconductor junctions; silicon; silicon-on-insulator; 100 nm; S-D diffusion; S-D junctions; SOI MOSFET; Si-SiO2; annealing; doping; high-K materials; hydrodynamic transport; impurities; lateral diffusion; optimization; short-channel effects; single-gate silicon-on-insulator MOSFET; source and drain; threshold voltage; Annealing; Degradation; Design optimization; Doping; Hydrodynamics; Impurities; MOSFET circuits; Silicon on insulator technology; Threshold voltage; Tunneling; Hydrodynamic transport; MOSFET; S/D; SCEs; SOI; lateral diffusion; short-channel effects; silicon-on-insulator; single-gate; source and drain;
fLanguage
English
Journal_Title
Electron Devices, IEEE Transactions on
Publisher
ieee
ISSN
0018-9383
Type
jour
DOI
10.1109/TED.2004.827360
Filename
1300824
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