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- W1993367648 abstract "Theory of electron transport phenomena in the relaxation time approximation, treating consistently the nonparabolic band structure of InSb, has been compared with available experimental data for various effects. Mixing of p-like components into the conduction band wave function in the nonparabolic region of energies has been incorporated into the theory of electron scattering by charged centers, polar optical phonons and acoustic phonons. In the limit of high degeneracy the analytical formulas for the mixed scattering mode have been obtained. Numerical values for the Hall mobility at 77, 300, 500 and 773°K, the thermoelectric power, and the longitudinal and transverse Nernst-Ettingshausen effects at room temperature for electron concentrations up to 1×1019 cm−3 have been computed for mixed scattering and compared with experimental data of various authors to obtain the best over-all fit, treating a controversial value of the deformation potential as an adjustable parameter. It has been found that all the effects, together with the free-carrier optical absorption, can be satisfactorily described with the deformation potential constant of 14,6 eV. Using this value it has been demonstrated that at room temperature the electron scattering at high electron concentrations is dominated by charged impurity and acoustic phonon modes, whereas at lower concentrations all three scattering mechanisms should be taken into account. The presented procedure can be readily applied to other III–V compounds." @default.
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- W1993367648 date "1971-01-01" @default.
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- W1993367648 title "Electron scattering and transport phenomena in n-InSb" @default.
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- W1993367648 doi "https://doi.org/10.1016/s0022-3697(71)80173-7" @default.
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