DocumentCode
1592870
Title
P-Channel I-MOS Transistor featuring Silicon Nano-Wire with Multiple-Gates, Strained Si1-y Cy I-region, in situ doped Si1-y Cy Source, and Sub-5 mV/decade Subthreshold Swing
Author
Toh, Eng-Huat ; Wang, Grace Huiqi ; Weeks, Doran ; Zhu, Ming ; Bauer, M. ; Spear, Jennifer ; Chan, Lap ; Thomas, Shawn G. ; Samudra, Ganesh ; Yeo, Yee-Chia
Author_Institution
Dept. of Electr. & Comput. Eng., Nat. Univ. of Singapore (NUS), Singapore
fYear
2008
Firstpage
24
Lastpage
25
Abstract
We realized Impact Ionization Nanowire Multiple-gate Field- Effect Transistors (I-MuGFETs or I-FinFETs) having a multiple- gate/nanowire-channel architecture to exploit the superior gate-to- channel coupling for reduced breakdown voltage VBD and enhanced device performance. The first p-channel Impact Ionization MOS transistor (I-MOS) having in situ doped source was also demonstrated. An in situ phosphorus-doped Si source with improved dopant activation and very abrupt junction profile reduces VBD and enhances the on-state current Ion. A further improvement was also made by incorporating strained Si1-yCy impact-ionization region (I-region) and in situ doped Si1-yCy source, leading to further reduction in VBD and enhancement in Ion. This is due to strain- induced reduction of the impact-ionization threshold energy Eth. In addition, excellent subthreshold swing of below 5 mV/decade at room temperature was achieved for all devices.
Keywords
MOSFET; impact ionisation; nanoelectronics; nanowires; semiconductor device breakdown; semiconductor doping; silicon; silicon compounds; Si1-yCy; breakdown voltage reduction; channel coupling; doped source; impact ionization nanowire transistor; multiple-gate field- effect transistor; p-channel IMOS transistor; Computer architecture; Drives; Epitaxial growth; Impact ionization; MOSFETs; Nanoscale devices; Photonic band gap; Silicon carbide; Temperature; Tensile strain;
fLanguage
English
Publisher
ieee
Conference_Titel
VLSI Technology, Systems and Applications, 2008. VLSI-TSA 2008. International Symposium on
Conference_Location
Hsinchu
ISSN
1524-766X
Print_ISBN
978-1-4244-1614-1
Electronic_ISBN
1524-766X
Type
conf
DOI
10.1109/VTSA.2008.4530781
Filename
4530781
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