paper

Energy relaxation rate of 2D hole gas in GaAs/InGaAs/GaAs quantum well within wide range of conductivitiy

arXiv:1010.2870

Abstract

The nonohmic conductivity of 2D hole gas (2DHG) in single quantum well structures within the temperature range of 1.4 - 4.2K, the carrier's densities and a wide range of conductivities () was investigated. It was shown that at conductivity the energy relaxation rate is well described by the conventional theory (P.J. Price J. Appl. Phys. 53, 6863 (1982)), which takes into account scattering on acoustic phonons with both piezoelectric and deformational potential coupling to holes. At the conductivity range energy the relaxation rate significantly deviates down from the theoretical value. The analysis of at different lattice temperature shows that this deviation does not result from crossover to the hopping conductivity, which occurs at , but from the Pippard ineffectiveness.

13 pages, 6 figures