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Magnetic polarons in a single diluted magnetic semiconductor quantum dot

A. A. Maksimov, G. Bacher, A. McDonald, V. D. Kulakovskii, A. Forchel, C. R. Becker, G. Landwehr, and L. W. Molenkamp
Phys. Rev. B 62, R7767(R) – Published 15 September 2000
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Abstract

Quasi-zero-dimensional magnetic polarons in single Cd0.93Mn0.07Te/Cd0.6Mg0.4Te quantum dots have been studied by photoluminescence spectroscopy. By comparing the experimental data with model calculations, the energy, the internal magnetic field, and the volume of the magnetic polarons are obtained. Moreover, the magnetic environment of the recombining electron hole pair causes a distinct broadening of the emission line (4meV) of one diluted magnetic single quantum dot. The alignment of the Mn-spins in high magnetic fields results in a linewidth narrowing of almost one order of magnitude and the linewidth becomes comparable to that of a nonmagnetic Cd0.93Mg0.07Te/Cd0.6Mg0.4Te reference sample.

  • Received 19 May 2000

DOI:https://doi.org/10.1103/PhysRevB.62.R7767

©2000 American Physical Society

Authors & Affiliations

A. A. Maksimov*, G. Bacher, A. McDonald, V. D. Kulakovskii*, and A. Forchel

  • Technische Physik, Universität Würzburg, Am Hubland, D–97074 Würzburg, Germany

C. R. Becker, G. Landwehr, and L. W. Molenkamp

  • Experimentelle Physik III, Universität Würzburg, Am Hubland, D–97074 Würzburg, Germany

  • *Permanent address: Institute of Solid State Physics, Russian Academy of Sciences, Chernogolovka, Moscow district, 142432, Russia.
  • Corresponding author: bacher@physik.uni-wuerzburg.de

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Vol. 62, Iss. 12 — 15 September 2000

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