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  4. Photoluminescence energy and linewidth in GaN/AlN stackings of quantum dot planes
 
research article

Photoluminescence energy and linewidth in GaN/AlN stackings of quantum dot planes

Kalliakos, S.
•
Bretagnon, T.
•
Lefebvre, P.
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2004
Journal of Applied Physics

We analyze the room temperature photoluminescence properties of several multilayer stackings of GaN/AlN quantum dots. We report drastic differences of emission energies and linewidths between continuous wave and time-resolved photoluminescence experiments. In continuous wave experiments, the screening of internal electric fields by accumulation of e-h pairs in quantum dot planes induces a blue-shift as well as an unexpected narrowing of the emission line, when the laser intensity is increased. Under intense, pulsed excitation, in time-resolved photoluminescence, a substantial blue-shift is induced, due to the partial cancelation of the quantum confined Stark effect. When the system is again free to relax, we observe a time-dependent red-shift of the line, which maintains a fairly constant width. We attribute the observed behavior of energies and linewidths to the intricate contributions of the in-plane distribution of dot sizes and of the depth-dependent decrease of the degree of excitation of the different planes. We support our interpretations by the use of a model based on a self-consistent solution of the Schrodinger and Poisson equations within the envelope function approximation. (C) 2004 American Institute of Physics.

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Type
research article
DOI
10.1063/1.1753085
Author(s)
Kalliakos, S.
Bretagnon, T.
Lefebvre, P.
Taliercio, T.
Gil, B.
Grandjean, N.  
Damilano, B.
Dussaigne, A.  
Massies, J.
Date Issued

2004

Published in
Journal of Applied Physics
Volume

96

Issue

1

Start page

180

End page

185

Subjects

OPTICAL-PROPERTIES

•

CARRIER LIFETIME

•

LIGHT-EMISSION

•

WELLS

•

TIME

•

POLARIZATION

•

DEPENDENCE

•

FIELDS

•

HETEROSTRUCTURES

•

NANOSTRUCTURES

Editorial or Peer reviewed

REVIEWED

Written at

OTHER

EPFL units
LASPE  
Available on Infoscience
October 5, 2010
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/55009
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