paper

Spin-orbit splitting of the conduction band in HgTe quantum wells: role of different mechanisms

arXiv:1807.03598 · doi:10.1016/j.physe.2019.02.007

Abstract

Spin-orbit splitting of conduction band in HgTe quantum wells was studied experimentally. In order to recognize the role of different mechanisms, we carried out detailed measurements of the Shubnikov-de Haas oscillations in gated structures with a quantum well widths from to nm over a wide range of electron density. With increasing electron density controlled by the gate voltage, splitting of the maximum of the Fourier spectrum into two components and and the appearance of the low-frequency component was observed. Analysis of these results shows that the components and give the electron densities and in spin-orbit split subbands while the component results from magneto-intersubband oscillations so that . Comparison of these data with results of self-consistent calculations carried out within the framework of four-band \emph{kP}-model shows that a main contribution to spin-orbit splitting comes from the Bychkov-Rashba effect. Contribution of the interface inversion asymmetry to the splitting of the conduction band turns out to be four-to-five times less than that for the valence band in the same structures.

6 pages, 6 figures