170,011 research outputs found
Electron energy distributions in silicon structures at low applied voltages and high electric fields
Development of an analytical mobility model for the simulation of ultra-thin single- and double-gate SOI MOSFETs
Brownian dynamics simulation of ion channels embedded in silicon membranes for sensor applications
In this work we present a three-dimensional numerical simulation technique for the study of ion permeation through ion channels embedded in silicon membranes, that can be exploited for sensor applications. The results of this work clarify how the charges embedded in the protein forming the ion channel can influence ionic conductance through silicon membrane slabs, controlling the channel conductance and selectivity with respect to ionic species
Correlation between Substrate Hot Electron Energy and Homogeneous Degradation in n-MOSFETs
Stability of Self-Consistent Monte-Carlo Simulations: Revised Analysis of Linear and Non-Linear Poisson Schemes
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