We study a stationary spin-polarized drift-diffusion model for semiconductor spintronic devices. This coupled system of continuity equations and a Poisson equation with mixed boundary conditions in all equations has to be considered in heterostructures. In 3D we prove the existence and boundedness of steady states. If the Dirichlet conditions are compatible or nearly compatible with thermodynamic equilibrium the solution is unique. The same properties are obtained for a space discretized version of the problem: Using a Scharfetter-Gummel scheme on 3D boundary conforming Delaunay grids we show existence, boundedness and, for small applied voltages, the uniqueness of the discrete solution
We study the evolution and distribution of nonequilibrium electron spin polarization in n-type semic...
The paper deals with equations modelling the redistribution of charged particles by reactions, drift...
We discuss a stationary energy model from semiconductor modelling. We accept the more realistic ass...
We study a stationary spin-polarized drift-diffusion model for semiconductor spintronic devices. Thi...
We introduce a spin-polarized drift-diffusion model for semiconductor spintronic devices. This coupl...
We study a stationary spin-polarized drift-diffusion model for semiconductor spintronic devices. Thi...
Our focus is on spintronic devices with operation states relying on spin drift and spin diffusion. T...
This thesis is decomposed into three parts. The main part is devoted to the study of spin polarized ...
The classic van Roosbroeck system describes the carrier transport in semiconductors in a drift diffu...
If the statistic function is modified, the equations can be derived by a variational formulation or ...
If the statistic function is modified, the equations can be derived by a variational formulation or ...
International audienceAn implicit Euler finite-volume scheme for a spinorial matrix drift-diffusion ...
A system of drift-diffusion equations with electric field under Dirichlet boundary conditions is an-...
The design of modern semiconductor devices requires the numerical simulation of basic fabrication st...
We investigate stationary energy models in heterostructures consisting of continuity equations for...
We study the evolution and distribution of nonequilibrium electron spin polarization in n-type semic...
The paper deals with equations modelling the redistribution of charged particles by reactions, drift...
We discuss a stationary energy model from semiconductor modelling. We accept the more realistic ass...
We study a stationary spin-polarized drift-diffusion model for semiconductor spintronic devices. Thi...
We introduce a spin-polarized drift-diffusion model for semiconductor spintronic devices. This coupl...
We study a stationary spin-polarized drift-diffusion model for semiconductor spintronic devices. Thi...
Our focus is on spintronic devices with operation states relying on spin drift and spin diffusion. T...
This thesis is decomposed into three parts. The main part is devoted to the study of spin polarized ...
The classic van Roosbroeck system describes the carrier transport in semiconductors in a drift diffu...
If the statistic function is modified, the equations can be derived by a variational formulation or ...
If the statistic function is modified, the equations can be derived by a variational formulation or ...
International audienceAn implicit Euler finite-volume scheme for a spinorial matrix drift-diffusion ...
A system of drift-diffusion equations with electric field under Dirichlet boundary conditions is an-...
The design of modern semiconductor devices requires the numerical simulation of basic fabrication st...
We investigate stationary energy models in heterostructures consisting of continuity equations for...
We study the evolution and distribution of nonequilibrium electron spin polarization in n-type semic...
The paper deals with equations modelling the redistribution of charged particles by reactions, drift...
We discuss a stationary energy model from semiconductor modelling. We accept the more realistic ass...