Spin-orbit coupling and intrinsic spin mixing in quantum dots
arXiv:cond-mat/0307027 · doi:10.1103/PhysRevB.69.125302
Abstract
Spin-orbit coupling effects are studied in quantum dots in InSb, a narrow-gap material. Competition between different Rashba and Dresselhaus terms is shown to produce wholesale changes in the spectrum. The large (and negative) -factor and the Rashba field produce states where spin is no longer a good quantum number and intrinsic flips occur at moderate magnetic fields. For dots with two electrons, a singlet-triplet mixing occurs in the ground state, with observable signatures in intraband FIR absorption, and possible importance in quantum computation.
REVTEX4 text with 3 figures (high resolution figs available by request). Submitted to PRB