We report here electronic transport properties measurements, scattering mechanisms and theoretical results on Fermi energy, donor state energy and modeling carrier charge mobility in the ternary alloys Hg1- x Cd x Te (x = 0.22) medium-infrared detector. We report again the band structure, magneto-transport results, X-ray diffraction, Seebeck and Shubnikov-de Haas effects (SDH) in the medium-infrared detector, narrow gap and two-dimensional p-type semiconductor HgTe(5.6 nm)/CdTe(3 nm) superlattice. The later sample is an alternative to the investigated alloy.
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Abidi, A.E., Nafidi, A., Kaaouachi, A.E., Chaib, H. (2008). Band Structure And Electronic Transport Properties In Ii–Vi Nano-Semiconductors. Application To Infrared Detectors Superlattices And Alloys. In: Bonča, J., Kruchinin, S. (eds) Electron Transport in Nanosystems. NATO Science for Peace and Security Series B: Physics and Biophysics. Springer, Dordrecht. https://doi.org/10.1007/978-1-4020-9146-9_30
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