paper

Temperature dependence of the electron spin g factor in GaAs

arXiv:0809.2456 · doi:10.1103/PhysRevB.78.245203

Abstract

The temperature dependence of the electron spin factor in GaAs is investigated experimentally and theoretically. Experimentally, the factor was measured using time-resolved Faraday rotation due to Larmor precession of electron spins in the temperature range between 4.5 K and 190 K. The experiment shows an almost linear increase of the value with the temperature. This result is in good agreement with other measurements based on photoluminescence quantum beats and time-resolved Kerr rotation up to room temperature. The experimental data are described theoretically taking into account a diminishing fundamental energy gap in GaAs due to lattice thermal dilatation and nonparabolicity of the conduction band calculated using a five-level kp model. At higher temperatures electrons populate higher Landau levels and the average factor is obtained from a summation over many levels. A very good description of the experimental data is obtained indicating that the observed increase of the spin factor with the temperature is predominantly due to band's nonparabolicity.

6 pages 4 figures

References in corpus (1)

Temperature dependence of the electron spin g factor in GaAs · wovepaper