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Magneto-optical studies of ballistic electron transport in single barrier heterostructures

โœ Scribed by R. Teissier; J.W. Cockburn; J.J. Finley; M.S. Skolnick; P.D. Buckle; D.J. Mowbray; R. Grey; G. Hill; M.A. Pate


Publisher
Elsevier Science
Year
1994
Tongue
English
Weight
171 KB
Volume
15
Category
Article
ISSN
0749-6036

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โœฆ Synopsis


We report an investigation of ballistic electron transport in GaAs/AlGaAs p-in single barrier structures with magnetic fields of up to (14 \mathrm{~T}) applied parallel to the tunneling direction ((B / / z)). The energy distribution and relaxation processes of the non-equilibrium electron population injected into the p-doped collector from the Landau levels of the emitter accumulation layer are studied by means of electroluminescence (EL) spectroscopy. The observation of emitter Landau level structure in the ballistic electron EL spectra shows that the 2D to 3D tunneling process is elastic. In addition to the ballistic electron EL, cross-barrier recombination between the electron and hole accumulation layers is observed. This allows a precise determination of the initial energy distribution of the injected electrons.


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