Electron-spin quantum-beat dephasing in quantum wells as a probe of the hole band structure

X. Marie, T. Amand, J. Barrau, P. Renucci, P. Lejeune, and V. K. Kalevich
Phys. Rev. B 61, 11065 – Published 15 April 2000
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Abstract

Time-resolved optical pumping experiments under transverse magnetic field at oblique incidence with respect to the growth axis have been performed on various quantum-well (QW) structures. When the incident photon energy is nonresonant with the heavy-hole exciton, the electron-spin quantum beats, which manifest the electron-spin Larmor precession, dephase with respect to the normal-incidence case. We show that the direction of the electron-spin precession can be deduced, which provides a method to determine unambiguously the sign of the conduction-electron g factor. Moreover, the amplitude of the dephasing is very sensitive to the mixing of the heavy- and light-hole states in the valence bands that are involved in optical transitions at a given photon energy. A theory of optical pumping of QWs under arbitrary incidence, based on the valence-band description in the effective-mass approximation, has been developed. It accounts quite well for the experimental observations.

  • Received 24 June 1999

DOI:https://doi.org/10.1103/PhysRevB.61.11065

©2000 American Physical Society

Authors & Affiliations

X. Marie, T. Amand, J. Barrau, P. Renucci, and P. Lejeune

  • Laboratoire de Physique de la Matière Condensée, Centre National de la Recherche Scientifique-UMR 5830 INSA, Complexe Scientifique de Rangueil, 31077 Toulouse cedex, France

V. K. Kalevich

  • A. F. Physical-Technical Institute, Russian Academy of Science, 194021 St. Petersburg, Russia

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Vol. 61, Iss. 16 — 15 April 2000

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