IEEE Electron Device Letters · 2004 · 465 citations · 11 references
Electrical EngineeringEngineeringPhysicsNanoelectronicsChannel MobilitiesApplied PhysicsHigh-/spl Kappa/ DielectricMosfet CharacteristicsSilicon On InsulatorMicroelectronicsBeyond CmosSurface PhononSemiconductor Device
We show experimental evidence of surface phonon scattering in the high-/spl kappa/ dielectric being the primary cause of channel electron mobility degradation. Next, we show that midgap TiN metal-gate electrode is effective in screening phonon scattering in the high-/spl kappa/ dielectric from coupling to the channel under inversion conditions, resulting in improved channel electron mobility. We then show that other metal-gate electrodes, such as the ones with n+ and p+ work functions, are also effective in improving channel mobilities to close to those of the conventional SiO/sub 2//poly-Si stack. Finally, we demonstrate this mobility degradation recovery translates directly into high drive performance on high-/spl kappa//metal-gate CMOS transistors with desirable threshold voltages.
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Massimo V. Fischetti, Deborah A. Neumayer, E. Cartier · Journal of Applied Physics · 2001 · 735 citations
Engineering, Optoelectronic Devices, Silicon On Insulator +20
Fermi level pinning at the polySi/metal oxide interface
Chris Hobbs, L.M. Fonseca, V. Dhandapani et al. · 2004 · 111 citations
30 nm physical gate length CMOS transistors with 1.0 ps n-MOS and 1.7 ps p-MOS gate delays
R. Chau, J. Kavalieros, B. Roberds et al. · 2002 · 110 citations
Issues in High-<i>ĸ</i> Gate Stack Interfaces
Veena Misra, Gerry Lucovsky, Gregory N. Parsons · MRS Bulletin · 2002 · 81 citations