DocumentCode
3852325
Title
Assessment of Electron Mobility in Ultrathin-Body InGaAs-on-Insulator MOSFETs Using Physics-Based Modeling
Author
Mirko Poljak;Vladimir Jovanovic;Dalibor Grgec;Tomislav Suligoj
Author_Institution
Department of Electrical Engineering, University of California at Los Angeles, Los Angeles, CA, USA
Volume
59
Issue
6
fYear
2012
Firstpage
1636
Lastpage
1643
Abstract
We have investigated the electron mobility in ultrathin-body InGaAs-on-insulator devices using physics-based modeling that self-consistently accounts for quantum confinement and covers band-structure effects in ultrathin III-V layers. Scattering by nonpolar and polar acoustic and optical phonons, surface roughness, and thickness fluctuations, Coulomb and alloy disorder have been included in the calculations. The modeling, calibrated and verified on experimental data from the literature, has revealed a strong influence of thickness fluctuations caused by the light effective mass of Γ valley electrons. Our results indicate that InGaAs-on-insulator MOSFETs are more influenced by interface properties compared with silicon-on-insulator devices and outperform them only above certain body thickness that depends on interface quality.
Keywords
"Scattering","MOSFETs","Indium gallium arsenide","Strontium","Electron mobility","Effective mass","Phonons"
Journal_Title
IEEE Transactions on Electron Devices
Publisher
ieee
ISSN
0018-9383
Type
jour
DOI
10.1109/TED.2012.2189217
Filename
6178789
Link To Document