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Modeling and Simulation of Electrostatics of Ge1-xSnx Layers Grown on Ge Substrates

  • Siddhant Gangwal
  • , Shunda Chen
  • , Tianshu Li
  • , Tzu Ming Lu
  • , Dragica Vasileska

Research output: Contribution to journalArticlepeer-review

4 Scopus citations

Abstract

This work introduces a comprehensive simulation tool that provides a robust 1D Schrödinger - Poisson solver for modeling the electrostatics of heterostructures with an arbitrary number of layers, and non-uniform doping profiles along with the treatment of partial ionization of dopants at low temperatures. The effective masses are derived from the first-principles calculations. The solver is used to characterize three Ge1-xSnx/Ge heterostructures with non-uniform doping profiles and determine the subband structure at various temperatures. The simulation results of the sheet carrier densities show excellent agreement with the experimentally extracted data, thus demonstrating the capabilities of the solver.

Original languageEnglish
Article number7900108
JournalIEEE Journal of Selected Topics in Quantum Electronics
Volume31
Issue number1
DOIs
StatePublished - 2025
Externally publishedYes

Keywords

  • density functional theory
  • Ge Sn/Ge heterostructures
  • low-temperature simulation
  • partial ionization of dopants
  • quantum confinement
  • Schrodinger -Poisson solver

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