Effect of symmetry reduction on the spin dynamics of (001)-oriented GaAs quantum wells
Author(s) -
David English,
J. Hübner,
P. S. Eldridge,
D. Lansing Taylor,
M. Henini,
R. T. Harley,
M. Oestreich
Publication year - 2013
Publication title -
physical review b
Language(s) - English
Resource type - Journals
eISSN - 1538-4489
pISSN - 1098-0121
DOI - 10.1103/physrevb.87.075304
Subject(s) - anisotropy , condensed matter physics , quantum well , physics , spin (aerodynamics) , symmetry (geometry) , relaxation (psychology) , quantum mechanics , psychology , social psychology , laser , geometry , mathematics , thermodynamics
Spin quantum beat spectroscopy is employed to investigate the in-plane anisotropy of the spin dynamics in (001) GaAs/AlGaAs quantum wells induced by an external electric field. This technique allows the anisotropy of the spin relaxation rate Γs and the electron Landé g factor g* to be measured simultaneously. The measurements are compared to similar data from (001) GaAs/AlGaAs quantum wells with applied shear strain and asymmetric barrier growth. All of these operations act to reduce the symmetry compared to that of a symmetric (001) quantum well in an identical manner (D2d → C2v). However, by looking at the anisotropy of both Γs and g* simultaneously we show that the microscopic actions of these symmetry breaking operations are very different. The experiments attest that although symmetry arguments are a very useful tool to identify the allowed spin dependent properties of a material system, only a microscopic approach reveals if allowed anisotropies will manifest. © 2013 American Physical Society
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