ABSTRACT
In diverse applications semiconductor materials
need to be doped, sometimes to nearly degenerate levels.eg. In applications
such as thermoelectric, transparent, electronics or power electronics. However
many materials with finite band gaps are not dopable at all, while others
exhibit strong preference toward allowing either p-type or n-type doping, but
not both. In this work, we develop a model ofstrained band InGaAs/GaAsSb double
quantum quantum well heterostructure on InP using transfer matrice and Model
solid theory. This MATLAB program model was used to obtain the transmission
coefficients, reflectance coefficients, transmission currents and electron/hole
mobility. These were obtained theoretically by employing experimental binary
band parameters obtained from literature.
JOSEPH (2025). Flux Transmission of Strained Band In GaAs/GaAsSb Double Quantum Well Nanostructure on InP Substrate (001)” :- Joseph, Ugochukwu w. Repository.mouau.edu.ng: Retrieved Oct 23, 2025, from https://repository.mouau.edu.ng/work/view/flux-transmission-of-strained-band-in-gaasgaassb-double-quantum-well-nanostructure-on-inp-substrate-001-joseph-ugochukwu-w-7-2
JOSEPH. "Flux Transmission of Strained Band In GaAs/GaAsSb Double Quantum Well Nanostructure on InP Substrate (001)” :- Joseph, Ugochukwu w" Repository.mouau.edu.ng. Repository.mouau.edu.ng, 22 Oct. 2025, https://repository.mouau.edu.ng/work/view/flux-transmission-of-strained-band-in-gaasgaassb-double-quantum-well-nanostructure-on-inp-substrate-001-joseph-ugochukwu-w-7-2. Accessed 23 Oct. 2025.
JOSEPH. "Flux Transmission of Strained Band In GaAs/GaAsSb Double Quantum Well Nanostructure on InP Substrate (001)” :- Joseph, Ugochukwu w". Repository.mouau.edu.ng, Repository.mouau.edu.ng, 22 Oct. 2025. Web. 23 Oct. 2025. < https://repository.mouau.edu.ng/work/view/flux-transmission-of-strained-band-in-gaasgaassb-double-quantum-well-nanostructure-on-inp-substrate-001-joseph-ugochukwu-w-7-2 >.
JOSEPH. "Flux Transmission of Strained Band In GaAs/GaAsSb Double Quantum Well Nanostructure on InP Substrate (001)” :- Joseph, Ugochukwu w" Repository.mouau.edu.ng (2025). Accessed 23 Oct. 2025. https://repository.mouau.edu.ng/work/view/flux-transmission-of-strained-band-in-gaasgaassb-double-quantum-well-nanostructure-on-inp-substrate-001-joseph-ugochukwu-w-7-2