Q_SchrodingerPoisso​n1D_CB

Full 1D Schrodinger-Poisson solver in the conduction band
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Mise à jour 2 jan. 2022

Q_SchrodingerPoisson1D_CB

Full Schrodinger-Poisson solver in 1D in the conduction band

Results_InGaAs-AlInAs_300K

This program solves the Schrodinger-Poisson equations in the conduction band for any heterostructures.

2 versions are available:

  1. one is using the Kane model to take into account the non-parabolicity. Two algorithm are available, the shooting method and the diagonalisation of the Hamiltonian (FEM). Both algorithm lead to the same results but the FEM is faster.
  2. The second is only using the shooting method and the non-parabolicity is implemented via the alpha parameter, alpha=1/Egap; and meff(E)=meff(0)(1+alphaE)

Both models follow the book of Paul Harrison and actually makes the 2d density of states not constant https://onlinelibrary.wiley.com/doi/book/10.1002/9781118923337

DOI:10.1002/9781118923337

A strain model is included. It basically shifts the conduction band edge The strain is mainly interesting for InGaAs/GaAs heterostructures The non-parabolicity is also included into the density of states for the Poisson solver.

-> Additionnal material can be added in the "materialDB_ZB.csv" file

-> II-VI and cubic nitride material parameters are available but should be grabt in the "Library.m" file

Enjoy! If you like it, don t forget the star!

Citation pour cette source

Laurent NEVOU (2024). Q_SchrodingerPoisson1D_CB (https://github.com/LaurentNevou/Q_SchrodingerPoisson1D_CB), GitHub. Récupéré le .

Compatibilité avec les versions de MATLAB
Créé avec R2021b
Compatible avec toutes les versions
Plateformes compatibles
Windows macOS Linux

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Les versions qui utilisent la branche GitHub par défaut ne peuvent pas être téléchargées

Version Publié le Notes de version
1.0.0

Pour consulter ou signaler des problèmes liés à ce module complémentaire GitHub, accédez au dépôt GitHub.
Pour consulter ou signaler des problèmes liés à ce module complémentaire GitHub, accédez au dépôt GitHub.