Energy Transfer Processes in InAs/GaAs Quantum Dot Bilayer Structure
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Published version
Author(s)
Type
Conference Paper
Abstract
We investigate double layer InAs/GaAs quantum dots grown in the Stransky-Krastanov mode by molecular beam epitaxy. The sample consists of two layers of InAs quantum dots separated by 10 nm thick GaAs layer, where the top quantum dot layer of an improved homogeneity is covered by an InGaAs cap. This configuration has allowed for the extension of the dots' emission to longer wavelengths. We probed the carrier transfer between the states confined in a double quantum well composed of InGaAs cap and the quantum dots wetting layer to the states in the quantum dots by means of photoluminescence excitation and photoreflectance spectroscopies. Efficient emission from quantum dots excited at the double quantum well ground state energy was observed. There is also presented a discussion on the carrier injection efficiency from the capping layer to the quantum dots.
Date Issued
2016-01-01
Date Acceptance
2015-06-01
Citation
Acta Physica Polonica A, 2016, 129 (1A), pp.A59-A61
ISSN
0587-4246
Publisher
Polish Academy of Sciences
Start Page
A59
End Page
A61
Journal / Book Title
Acta Physica Polonica A
Volume
129
Issue
1A
Copyright Statement
© Acta Physica Polonica
Sponsor
Engineering & Physical Science Research Council (EPSRC)
Commission of the European Communities
Engineering & Physical Science Research Council (E
Engineering & Physical Science Research Council (EPSRC)
Ingenia Holdings Limited
Commission of the European Communities
Engineering & Physical Science Research Council (EPSRC)
Grant Number
GR/S05762/01
HPRN-CT-2002-00315
GR/R55078/01
EP/C511972/1
DVP/EJV
237900
EP/K503381/1
Source
44th Jaszowiec International School and Conference on the Physics of Semiconductors (IS and CPS)
Subjects
Science & Technology
Physical Sciences
Physics, Multidisciplinary
Physics
1.3 MU-M
PHOTOLUMINESCENCE
GAAS
TEMPERATURE
EMISSION
STRAIN
Publication Status
Published
Start Date
2015-06-20
Finish Date
2015-06-25
Coverage Spatial
Wisla, POLAND