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- W2063669013 abstract "Using the expressions for the hot-electron distribution function derived by us, we have made a comparative study of the effect of degeneracy on the variation of number density and some prominent galvano-thermomagnetic transport coefficients (GTMTC) with dc electric and magnetic fields for a $n$-type InSb sample at 350ifmmode^circelsetextdegreefi{}K; the applied electric field was evaluated self-consistently at all values of the transverse magnetic field. Degeneracy makes the distribution hotter and causes the electric and magnetic field dependence of the isothermal Ettinghausen-Nernst coefficient to undergo a reversal. However, the variation of the remaining GTMTC remains unchanged. The absolute values of the isothermal electrical and thermal conductivities and the isothermal Hall coefficient are slightly reduced, whereas the isothermal Nernst and Righi-Leduc coefficients are slightly increased. No explicit comparison between theory and experiment was possible because of the nonavailability of appropriate experimental results. The absolute values of the isothermal electrical and thermal conductivities and the isothermal Hal coefficient are slightly reduced, whereas the isothermal nernst and Right-Leduc coefficients are slighty increased. No explicit comparison between thpossible because of the nonavailability of appropriate experimental results." @default.
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- W2063669013 date "1972-09-15" @default.
- W2063669013 modified "2023-09-25" @default.
- W2063669013 title "Degeneracy and Screening Effects in the Transport Coefficients ofn-Type InSb at High Temperatures" @default.
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- W2063669013 doi "https://doi.org/10.1103/physrevb.6.2414" @default.
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