tiberCAD
tiberCAD MODULES
| DRIFT-DIFFUSION (DD) |
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The Drift-Diffusion module calculates transport of electrons and holes based on the Drift Diffusion approximation in 1, 2 and 3 dimensions. The continuity equations for electrons and holes are solved selfconsistently with the Poisson equation. The carrier densities are calculated assuming a local thermal equilibrium, using Boltzmann or Fermi-Dirac statistics. Mechanical, thermal and quantization effects can be included fully selfconsistently by coupling to the Elasticity, Thermal and Envelope Function Approximation modules.
Spontaneous and piezoelectric polarization is accounted for in the Poisson equation. The local band parameters are obtained based on a strain-corrected bulk k·p calculation. The module contains the most common models for carrier mobility, recombination and trap states.
Main characteristics of the model:
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The
Spontaneous and piezoelectric polarization is accounted for in the Poisson equation. The local band parameters are obtained based on a strain-corrected bulk k·p calculation. The module contains the most common models for carrier mobility, recombination and trap states.




