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An Accurate and Efficient Surface Scattering Model for Monte Carlo Device Simulation (CROSBI ID 556917)

Prilog sa skupa u zborniku | izvorni znanstveni rad | međunarodna recenzija

Grgec, Dalibor ; Jungemann, Chistoph ; Nguyen, Chi-Dong ; Neinhüs, Burkhard ; Meinerzhagen, Bernd An Accurate and Efficient Surface Scattering Model for Monte Carlo Device Simulation // Proceedings of 7th International Conference on Solid-State and Integrated Circuits Technology. Peking, 2004. str. 991-994

Podaci o odgovornosti

Grgec, Dalibor ; Jungemann, Chistoph ; Nguyen, Chi-Dong ; Neinhüs, Burkhard ; Meinerzhagen, Bernd

engleski

An Accurate and Efficient Surface Scattering Model for Monte Carlo Device Simulation

A new efficient model for electron surface scattering in Si/SiO2 MOS structures for Monte Carlo device simulation compatible with quantum correction of the carrier density is presented. The model is based on simplified physics based equations for nonlocal surface roughness scattering and surface phonons scattering rates. Some model parameters are adjusted and a few additional terms are introduced to match the relevant measurements. The simulation model reproduces the measured low-field effective mobility vs. effective field curves with excellent accuracy including the temperature dependence. Device simulations of a MOS transistor with the new surface scattering model and additional effects (contact resistances and self-heating) were performed. The results were compared to the measurements and simulation results from a classical device simulator (drift-diffusion and hydrodynamic model) with an equivalent quantum correction and similar surface mobility model.

Monte Carlo; Device Simulation; Surface Scattering

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Podaci o prilogu

991-994.

2004.

objavljeno

Podaci o matičnoj publikaciji

Proceedings of 7th International Conference on Solid-State and Integrated Circuits Technology

Peking:

Podaci o skupu

7th International Conference on Solid-State and Integrated Circuits Technology

predavanje

18.10.2004-21.10.2004

Peking, Kina

Povezanost rada

Povezane osobe




Fizika, Elektrotehnika