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2007 | 112 | 2 | 461-466

Article title

Control of Photon Polarization in GaAs/AlAs Single Quantum Dot Emission

Content

Title variants

Languages of publication

EN

Abstracts

EN
We study polarization resolved correlation between photons emitted in cascaded biexciton-exciton recombination from a single quantum dot formed in type II GaAs/AlAs bilayer. Magnetic field induced transition from anisotropy controlled to the Zeeman controlled emission was demonstrated by a circular polarization correlation between the emitted photons. A simple model describing the effect allowed us to determine the anisotropic exchange splitting of the excitonic state. This method of the anisotropic exchange splitting determination can be useful in the case when other methods are not sensitive enough.

Keywords

Year

Volume

112

Issue

2

Pages

461-466

Physical description

Dates

published
2007-08
received
2007-06-09

Contributors

  • Institute of Experimental Physics, Warsaw University, Hoża 69, 00-681 Warsaw, Poland
  • Institute of Experimental Physics, Warsaw University, Hoża 69, 00-681 Warsaw, Poland
  • Institute of Experimental Physics, Warsaw University, Hoża 69, 00-681 Warsaw, Poland
author
  • Institute of Experimental Physics, Warsaw University, Hoża 69, 00-681 Warsaw, Poland
  • Grenoble High Magnetic Field Laboratory, CNRS, Grenoble, France
author
  • Institute of Experimental Physics, Warsaw University, Hoża 69, 00-681 Warsaw, Poland
author
  • Institute of Experimental Physics, Warsaw University, Hoża 69, 00-681 Warsaw, Poland
author
  • Institute of Experimental Physics, Warsaw University, Hoża 69, 00-681 Warsaw, Poland
author
  • Institute of Experimental Physics, Warsaw University, Hoża 69, 00-681 Warsaw, Poland
author
  • Institute of Experimental Physics, Warsaw University, Hoża 69, 00-681 Warsaw, Poland
author
  • Institute of Experimental Physics, Warsaw University, Hoża 69, 00-681 Warsaw, Poland
  • Institute of Experimental Physics, Warsaw University, Hoża 69, 00-681 Warsaw, Poland
author
  • Grenoble High Magnetic Field Laboratory, CNRS, Grenoble, France
  • Laboratoire de Photonique et de Nanostructures, Marcoussis, France

References

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  • 2. B. Chwalisz-Pietka, A. Wysmolek, R. Stepniewski, M. Potemski, S. Raymond, R. Bo.zek, V. Thierry-Mieg, Int. J. Mod. Phys. B, 21, 1654, 2007
  • 3. J. Jasny, J. Sepiol, Chem. Phys. Lett., 273, 439, 1997
  • 4. J. Suffczyński, T. Kazimierczuk, M. Goryca, B. Piechal, A. Trajnerowicz, K. Kowalik, P. Kossacki, A. Golnik, K.P. Korona, M. Nawrocki, J.A. Gaj, G. Karczewski, Phys. Rev. B, 74, 085319, 2006
  • 5. R.M. Stevenson, R.M. Thompson, A.J. Shields, I. Farrer, B.E. Kardynal, D.A. Ritchie, M. Pepper, Phys. Rev. B, 66, 081302, 2002
  • 6. M. Bayer, G. Ortner, O. Stern, A. Kuther, A.A. Gorbunov, A. Forchel, P. Hawrylak, S. Fafard, K. Hinzer, T.L. Reinecke, S.N. Walck, J.P. Reithmaier, F. Klopf, F. Schafer, Phys. Rev. B, 65, 195315, 2002
  • 7. L. Besombes, L. Marsal, K. Kheng, T. Charvolin, Le Si Dang, A. Wasiela, H. Mariette, J. Cryst. Growth, 214/215, 742, 2000

Document Type

Publication order reference

Identifiers

YADDA identifier

bwmeta1.element.bwnjournal-article-appv112n255kz
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