European Journal of Applied Mathematics · 2001 · 66 citations · 0 references
SemiconductorsDevice ModelingElectrical EngineeringEngineeringPhysicsEntropyQuasineutral LimitApplied PhysicsDiffusion ProcessSemiconductor MaterialSingular Perturbation ParameterAnomalous DiffusionSemiconductor Drift-diffusion ModelCharge Carrier TransportStochastic Differential EquationDiffusion Time Scale
The classical time-dependent drift-diffusion model for semiconductors is considered for small scaled Debye length (which is a singular perturbation parameter). The corresponding limit is carried out on both the dielectric relaxation time scale and the diffusion time scale. The latter is a quasineutral limit, and the former can be interpreted as an initial time layer problem. The main mathematical tool for the analytically rigorous singular perturbation theory of this paper is the (physical) entropy of the system.