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Shape and interband transition behavior of InAs quantum dots dependent on number of stacking cycles

Authors
Kim, KMPark, YJRoh, CHPark, YMKim, EKHyon, CKPark, JHKim, TW
Issue Date
1월-2003
Publisher
INST PURE APPLIED PHYSICS
Keywords
InAs quantum dot; multistacked quantum dot; molecular beam epitaxy; strain fields; quantum dot shape; interband transition
Citation
JAPANESE JOURNAL OF APPLIED PHYSICS PART 1-REGULAR PAPERS SHORT NOTES & REVIEW PAPERS, v.42, no.1, pp.54 - 57
Indexed
SCIE
SCOPUS
Journal Title
JAPANESE JOURNAL OF APPLIED PHYSICS PART 1-REGULAR PAPERS SHORT NOTES & REVIEW PAPERS
Volume
42
Number
1
Start Page
54
End Page
57
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/124365
DOI
10.1143/JJAP.42.54
ISSN
0021-4922
Abstract
InAs/GaAs multistacked quantum dot (QD) layers were grown by using molecular beam epitaxy with various numbers of stacking cycles to investigate the shape and the interband transition in the InAs QDs. The appearance of another photoluminescence (PL) peak on InAs/GaAs QDs with more than six stacking cycles originated from the change of the QDs from an isotropic pyramidal shape to an elongated anisotropic pyramidal shape. Dislocation lines along the [1 (1) over bar0] direction existing on. the InAs/GaAs QDs with more than six stacking cycles were attributed to the existence of excessive strain fields. Scanning transmission electron microscope and atomic force microscope images showed that the QD shape in the [1 (1) over bar0] direction was elongated without any remarkable change in the volume of the QDs. These results indicate that the shape of the InAs/GaAs QDs was strongly affected by the number of the stacking cycles and that the appearance of another PL peak is related to the change of the QD shape.
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