In an electron-hole plasma, electron-hole collisions conserve the total momentum but relax the electric current. The corresponding relaxation time τ_e-h is obtained from two coupled Boltzmann equations. We take into account multivalley structure and screening. An exact solution is given when the electron-hole plasma is in the quantum limit, while in the classical limit, we use a variational approach. We find that when the plasma density is increased at fixed temperature, τ_e-h goes through a minimum reached roughly when the plasma becomes degenerate. The size of {}/τ_e-h at the maximum is mainly controlled by the exciton binding energy.
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Combescot et al. (1987) studied this question.
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