Matthew T. Currie
TSMC
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Publication
Featured researches published by Matthew T. Currie.
IEEE Electron Device Letters | 2003
Jung-Suk Goo; Qi Xiang; Yayoi Takamura; Haihong Wang; James Pan; Farzad Arasnia; Eric N. Paton; Paul R. Besser; Maxim V. Sidorov; Ercan Adem; Anthony J. Lochtefeld; G. Braithwaite; Matthew T. Currie; Richard Hammond; Mayank T. Bulsara; Ming-Ren Lin
Strained-Si nMOSFETs with a standard polysilicon gate process were fabricated down to 25 nm gate length with well-behaved characteristics and small difference in short channel effects. The performance enhancement degrades linearly as the gate length becomes shorter, due to not only the parasitic resistance but also heavy halo implant. Thus the key integration issues are how to manage threshold difference and As diffusion without excess doping. With comparable doping and well controlled parasitic resistance, up to 45% improvement in drive current is predicted for sub-50 nm gate length strained-Si nMOSFETs on the Si/sub 0.8/Ge/sub 0.2/ substrate. In this work approximately 45% enhancement is in fact demonstrated for 35 nm gate length devices, through advanced channel engineering and implementation of metal gates.
Archive | 2007
Matthew T. Currie; Anthony J. Lochtefeld; Richard Hammond; Eugene A. Fitzgerald
Archive | 2006
Anthony J. Lochtefeld; Matthew T. Currie; Zhiyuan Cheng; James Fiorenza; G. Braithwaite; Thomas A. Langdo
Archive | 2008
Matthew T. Currie
Archive | 2005
Thomas A. Langdo; Matthew T. Currie; Richard Hammond; Anthony J. Lochtefeld; Eugene A. Fitzgerald
Archive | 2002
G. Braithwaite; Richard Hammond; Matthew T. Currie
Archive | 2003
Richard Westhoff; V. K. Yang; Matthew T. Currie; Christopher Vineis; Christopher W Leitz
Archive | 2010
Eugene A. Fitzgerald; Richard Westhoff; Matthew T. Currie; Christopher Vineis; Thomas A. Langdo
Archive | 2007
Thomas A. Langdo; Matthew T. Currie; Richard Hammond; Anthony J. Lochtefeld; Eugene A. Fitzgerald
Archive | 2008
Mayank Bulsara; Matthew T. Currie; Anthony J. Lochtefeld