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Formation and optical properties of ZnSe self-assembled quantum dots in Cl-doped ZnSe thin films grown on GaAs (100) Substrates

Authors
Panin, Gennady NKim, Hyuk juKim, Su younJung, Jae hunKim, Tae WhanJeon, Hee ChangeKang, Taewon WangKim, Mun deok
Issue Date
Sep-2007
Publisher
Trans Tech Publications Ltd
Keywords
Optical properties; Quantum dots; Structural properties; ZnSe nanodots
Citation
Solid State Phenomena, v.124-126, no.PART 1, pp.567 - 570
Indexed
SCOPUS
Journal Title
Solid State Phenomena
Volume
124-126
Number
PART 1
Start Page
567
End Page
570
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/179588
DOI
10.4028/www.scientific.net/SSP.124-126.567
ISSN
1012-0394
Abstract
The high-resolution scanning electron microscopy (HRSEM) image showed that self-assembled ZnSe small quantum dots (QDs) and large nanodots with a pyramid shape were formed in the Cl-doped ZnSe epilayers grown on GaAs (100) substrates. The formation of the ZnSe QDs was attributed to three-dimensional growth controlled by distribution of the impurities in the Cl-doped ZnSe epilayrs. Cathodoluminescence (CL) measurements at room temperature revealed the emission peak at 3.1 eV corresponding to the blue shift approximately 400 meV from the near band edge emission of 2.7 eV in the bulk ZnSe. The blue shifted CL peak indicates the quantum confinement effect resulting from the formation of the ZnSe QDs in the Cl-doped ZnSe thin film. While the peak position of the donor-acceptor pair emission shifted to higher energies with decreasing temperature, the band-edge emission peak for the QDs did not significantly change.
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