Light-hole exciton mixing and dynamics in Mn-doped quantum dots

V. Moldoveanu, I. V. Dinu, R. Dragomir, and B. Tanatar
Phys. Rev. B 93, 165421 – Published 18 April 2016

Abstract

We investigate theoretically the spectral and dynamical effects of the short-range exchange interaction between a single manganese (Mn) atom hosted by cylindrical CdTe quantum dots and its light-hole excitons or biexcitons. Our approach is based on the Kohn-Luttinger k·p theory and configuration interaction method, the dynamics of the system in the presence of intraband relaxation being derived from the von Neumann–Lindblad equation. The complex structure of the light-hole exciton absorption spectrum reveals the exchange-induced exciton mixing and depends strongly on the Mn position. In particular, if the Mn atom is closer to the edges of the cylinder, the bright and dark light-hole excitons are mixed by the hole-Mn exchange alone. Consequently, their populations exhibit exchange-induced Rabi oscillations which can be viewed as optical signatures of light-hole spin reversal. Similar results are obtained for mixed biexcitons, in this case the exchange-induced Rabi oscillations being damped by the intraband hole relaxation processes. The effect of light-hole heavy-hole mixing is also discussed.

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  • Received 12 February 2016
  • Revised 4 April 2016

DOI:https://doi.org/10.1103/PhysRevB.93.165421

©2016 American Physical Society

Physics Subject Headings (PhySH)

  1. Research Areas
  1. Physical Systems
Condensed Matter, Materials & Applied Physics

Authors & Affiliations

V. Moldoveanu1, I. V. Dinu1, R. Dragomir1,2, and B. Tanatar3

  • 1National Institute of Materials Physics, P.O. Box MG-7, Bucharest-Magurele, Romania
  • 2Faculty of Physics, University of Bucharest, Romania
  • 3Department of Physics, Bilkent University, Bilkent 06800, Ankara, Turkey

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Issue

Vol. 93, Iss. 16 — 15 April 2016

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