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    AuthorAlyamani, Ahmed Y. (1)Anjum, Dalaver H. (1)El-Desouki, Munir M. (1)Elafandy, Rami T. (1)Janjua, Bilal (1)View MoreDepartment
    Computer, Electrical and Mathematical Sciences and Engineering (CEMSE) Division (1)
    Electrical Engineering Program (1)
    Electron Microscopy (1)Imaging and Characterization Core Lab (1)JournalJournal of Nanophotonics (1)Publisher
    SPIE-Intl Soc Optical Eng (1)
    Subjectcathodoluminescence (1)GaN (1)nanowires (1)photoluminescence (1)View MoreType
    Article (1)
    Year (Issue Date)
    2017 (1)
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    Open Access (1)

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    Spatially resolved investigation of competing nanocluster emission in quantum-disks-in-nanowires structure characterized by nanoscale cathodoluminescence

    Prabaswara, Aditya; Stowe, David J.; Janjua, Bilal; Ng, Tien Khee; Anjum, Dalaver H.; Longo, Paolo; Zhao, Chao; Elafandy, Rami T.; Li, Xiaohang; Alyamani, Ahmed Y.; El-Desouki, Munir M.; Ooi, Boon S. (Journal of Nanophotonics, SPIE-Intl Soc Optical Eng, 2017-06-30) [Article]
    We report on the study and characterization of nanoclusters-related recombination centers within quantum-disks-in-nanowires heterostructure by utilizing microphotoluminescence (mu-PL) and cathodoluminescence scanning transmission electron microscopy (CL-STEM). mu-PL measurement shows that the nanoclusters-related recombination center exhibits different temperature-dependent characteristics compared with the surrounding InGaN quantum-disksrelated recombination center. CL-STEM measurements reveal that these recombination centers mainly arise from irregularities within the quantum disks, with a strong, spatially localized emission when measured at low temperature. The spectra obtained from both CL-STEM and mu-PL correlate well with each other. Our work sheds light on the optical and structural properties of simultaneously coexisting recombination centers within nanowires heterostructures. (C) The Authors. Published by SPIE under a Creative Commons Attribution 3.0 Unported License. Distribution or reproduction of this work in whole or in part requires full attribution of the original publication, including its DOI.
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