Transport properties of closely separated two-dimensional electron gases in a channel-doped back gated high electron mobility transistor
A. Kurobe, J. E. F. Frost, D. A. Ritchie, G. A. C. Jones, M. Pepper
Abstract
A. Kurobe, J. E. F. Frost, D. A. Ritchie, G. A. C. Jones, M. Pepper
Abstract
We have investigated electron transport in two, closely separated, two-dimensional electron gases in a wide GaAs quantum well controlled both by front and back gates. The electron mobility in the back channel was considerably reduced by impurity doping. Magnetotransport measurements suggest the existence of a low mobility state associated with a high mobility front gas state. The results have a bearing on the proposed velocity modulation transistor, as the existence of two electron channels localized at their respective interfaces, without mutual interaction, can be difficult to achieve.
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We have investigated electron transport in two, closely separated, two-dimensional electron gases in a wide GaAs quantum well controlled both by front and back gates. The electron mobility in the back channel was considerably reduced by impurity doping. Magnetotransport measurements suggest the existence of a low mobility state associated with a high mobility front gas state. The results have a bearing on the proposed velocity modulation transistor, as the existence of two electron channels localized at their respective interfaces, without mutual interaction, can be difficult to achieve.
Key concepts: Induced high electron mobility transistor, Electron mobility, Transistor, Fermi gas, Doping, Electron, Electron transport chain, Impurity