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Magneto-optical studies of self-organized InAs/GaAs quantum dots

L. R. Wilson, D. J. Mowbray, M. S. Skolnick, M. Morifuji, M. J. Steer, I. A. Larkin, and M. Hopkinson
Phys. Rev. B 57, R2073(R) – Published 15 January 1998
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Abstract

Magneto-photoluminescence and photoluminescence excitation (PLE) measurements of self-organized InAs/GaAs quantum dots are reported. For fields applied along the growth direction the first excited-state transition exhibits a linear Zeeman splitting, consistent with a transition between the ground electron state and an excited p-like hole state (Δn0). The hole mass determined from the splitting is in good agreement with the value obtained from a k⋅p calculation for the highly strained dots. The size of the splitting decreases as the field is rotated away from the growth direction, demonstrating the highly anisotropic nature of the carrier wave function. A comparison of spectra recorded at high dot carrier occupancies (≫1) in photoluminescence and at low carrier occupancies (≪1) in PLE reveals the influence of many-carrier Coulomb interactions.

  • Received 14 August 1997

DOI:https://doi.org/10.1103/PhysRevB.57.R2073

©1998 American Physical Society

Authors & Affiliations

L. R. Wilson, D. J. Mowbray*, M. S. Skolnick, M. Morifuji, M. J. Steer, and I. A. Larkin

  • Department of Physics, University of Sheffield, Sheffield S3 7RH, United Kingdom

M. Hopkinson

  • EPSRC Central Facility for III-V Semiconductors, Department of Electronic and Electrical Engineering, University of Sheffield, Sheffield, S1 3JD, United Kingdom

  • *Electronic address: D.Mowbray@Sheffield.ac.uk
  • Permanent address: Department of Electronic Engineering, Osaka University, Yamada-oka 2-1, Suita, Osaka 565, Japan.

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Vol. 57, Iss. 4 — 15 January 1998

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