The influence of spherical nanoindentation on the band edge and deep level emission of single crystal c-axis ZnO has been studied by cathodoluminescence(CL) spectroscopy and monochromatic imaging. Excitonic emission is quenched at the indent site and defect emission in the range of 450–720nm is enhanced.The authors wish to acknowledge the Australian Research Council for its financial support
University of Technology, Sydney. Faculty of Science.ZnO is a direct semiconductor with a band gap o...
International audienceWe report an in-depth analysis of ZnO micropods emission. A strong correlation...
International audienceWe report an in-depth analysis of ZnO micropods emission. A strong correlation...
The influence of spherical nanoindentation on the band edge and deep level emission of single crysta...
The influence of spherical nanoindentation on the band edge and deep level emission of single crysta...
We report photoluminescence (PL) studies of the surface exciton peak in ZnO nanostructures at ∼3.367...
We report photoluminescence (PL) studies of the surface exciton peak in ZnO nanostructures at ∼3.367...
We report photoluminescence (PL) studies of the surface exciton peak in ZnO nanostructures at ∼3.367...
© 2018 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim The spatial distribution of ubiquitous green lumin...
In semiconductor nanowires, understanding both the sources of luminescence (excitonic recombination...
In semiconductor nanowires, understanding both the sources of luminescence (excitonic recombination,...
[[abstract]]ZnO commonly exhibits luminescence in the visible spectral range due to different intrin...
The Supporting Information is available free of charge on the ACS Publications website at DOI: 10.10...
We present optically-pumped emission data for ZnO, showing that high excitation effects and stimulat...
We present optically-pumped emission data for ZnO, showing that high excitation effects and stimulat...
University of Technology, Sydney. Faculty of Science.ZnO is a direct semiconductor with a band gap o...
International audienceWe report an in-depth analysis of ZnO micropods emission. A strong correlation...
International audienceWe report an in-depth analysis of ZnO micropods emission. A strong correlation...
The influence of spherical nanoindentation on the band edge and deep level emission of single crysta...
The influence of spherical nanoindentation on the band edge and deep level emission of single crysta...
We report photoluminescence (PL) studies of the surface exciton peak in ZnO nanostructures at ∼3.367...
We report photoluminescence (PL) studies of the surface exciton peak in ZnO nanostructures at ∼3.367...
We report photoluminescence (PL) studies of the surface exciton peak in ZnO nanostructures at ∼3.367...
© 2018 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim The spatial distribution of ubiquitous green lumin...
In semiconductor nanowires, understanding both the sources of luminescence (excitonic recombination...
In semiconductor nanowires, understanding both the sources of luminescence (excitonic recombination,...
[[abstract]]ZnO commonly exhibits luminescence in the visible spectral range due to different intrin...
The Supporting Information is available free of charge on the ACS Publications website at DOI: 10.10...
We present optically-pumped emission data for ZnO, showing that high excitation effects and stimulat...
We present optically-pumped emission data for ZnO, showing that high excitation effects and stimulat...
University of Technology, Sydney. Faculty of Science.ZnO is a direct semiconductor with a band gap o...
International audienceWe report an in-depth analysis of ZnO micropods emission. A strong correlation...
International audienceWe report an in-depth analysis of ZnO micropods emission. A strong correlation...