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  4. The influence of InAs coverage on the performances self-assembled InGaAs quantum rings
 
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The influence of InAs coverage on the performances self-assembled InGaAs quantum rings

Journal
Journal of Crystal Growth
Journal Volume
301-302
Journal Issue
SPEC. ISS.
Pages
841-845
Date Issued
2007
Author(s)
Huang, C.-Y.
Wu, M.-C.
Lin, S.-Y.
Dai, J.-H.
SI-CHEN LEE  
DOI
10.1016/j.jcrysgro.2006.11.267
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/498729
https://www.scopus.com/inward/record.uri?eid=2-s2.0-33947320761&doi=10.1016%2fj.jcrysgro.2006.11.267&partnerID=40&md5=ca2357172e5d823d9abcc5d01f0b95b2
Abstract
The influence of InAs coverage on the formation of self-assembled quantum rings (QRs) is investigated in this report. With decreasing InAs coverage from 2.6 to 2.2 monolayers (MLs), the QR density would decrease from 5×109 cm-2 to invisible according to the atomic force microscope (AFM) measurements. The results are attributed to a much smaller 2.2 ML InAs quantum dot (QD) height and therefore much smaller QR structures would be obtained with the almost fully capping GaAs cap layer. Compared with QD sample with the same 2.6 ML InAs coverage, it is found that the QD density is about one order of magnitude larger than that of QRs. The phenomenon is attributed to the QD size non-uniformity such that instead of partial capping, the 2-nm-GaAs cap layer has fully covered the smaller QDs. Also observed is the blue shift of photoluminescence (PL) peak wavelengths of the QR structures with decreasing InAs coverage, which is attributed to the increase of Ga composition and the decrease of QR height during the intermixing of GaAs capping layer and the InAs QDs. © 2007 Elsevier B.V. All rights reserved.
Subjects
A1. Atomic force microscopy; A1. Nanostructures; A3. Molecular beam epitaxy
Other Subjects
Atomic force microscopy; Molecular beam epitaxy; Nanostructured materials; Photoluminescence; Quantum electronics; Self assembly; Capping layers; Intermixing; Quantum dot height; Size non-uniformity; Semiconducting indium gallium arsenide
Type
journal article

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