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Symmetry properties of n-doped (Cd,Mn)Te quantum well photoluminescence spectra: An exemplary evidence for anisotropy-induced valence-band mixing. / Koudinov, A. V.; Kehl, C.; Astakhov, G.; Geurts, J.; Wojtowicz, T.; Karczewski, G.

In: Applied Physics Letters, Vol. 108, No. 191113, 2016.

Research output: Contribution to journalArticle

Harvard

Koudinov, AV, Kehl, C, Astakhov, G, Geurts, J, Wojtowicz, T & Karczewski, G 2016, 'Symmetry properties of n-doped (Cd,Mn)Te quantum well photoluminescence spectra: An exemplary evidence for anisotropy-induced valence-band mixing', Applied Physics Letters, vol. 108, no. 191113.

APA

Koudinov, A. V., Kehl, C., Astakhov, G., Geurts, J., Wojtowicz, T., & Karczewski, G. (2016). Symmetry properties of n-doped (Cd,Mn)Te quantum well photoluminescence spectra: An exemplary evidence for anisotropy-induced valence-band mixing. Applied Physics Letters, 108(191113).

Vancouver

Author

Koudinov, A. V. ; Kehl, C. ; Astakhov, G. ; Geurts, J. ; Wojtowicz, T. ; Karczewski, G. / Symmetry properties of n-doped (Cd,Mn)Te quantum well photoluminescence spectra: An exemplary evidence for anisotropy-induced valence-band mixing. In: Applied Physics Letters. 2016 ; Vol. 108, No. 191113.

BibTeX

@article{05b77b2cc3d74f21aa6c0f81c10d9021,
title = "Symmetry properties of n-doped (Cd,Mn)Te quantum well photoluminescence spectra: An exemplary evidence for anisotropy-induced valence-band mixing",
author = "Koudinov, {A. V.} and C. Kehl and G. Astakhov and J. Geurts and T. Wojtowicz and G. Karczewski",
year = "2016",
language = "не определен",
volume = "108",
journal = "Applied Physics Letters",
issn = "0003-6951",
publisher = "American Institute of Physics",
number = "191113",

}

RIS

TY - JOUR

T1 - Symmetry properties of n-doped (Cd,Mn)Te quantum well photoluminescence spectra: An exemplary evidence for anisotropy-induced valence-band mixing

AU - Koudinov, A. V.

AU - Kehl, C.

AU - Astakhov, G.

AU - Geurts, J.

AU - Wojtowicz, T.

AU - Karczewski, G.

PY - 2016

Y1 - 2016

M3 - статья

VL - 108

JO - Applied Physics Letters

JF - Applied Physics Letters

SN - 0003-6951

IS - 191113

ER -

ID: 7633892