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- W3102039040 endingPage "455706" @default.
- W3102039040 startingPage "455706" @default.
- W3102039040 abstract "Electron irradiation of GaN nanowires in a scanning electron microscope strongly reduces their luminous efficiency as shown by cathodoluminescence imaging and spectroscopy. We demonstrate that this luminescence quenching originates from a combination of charge trapping at already existing surface states and the formation of new surface states induced by the adsorption of C on the nanowire sidewalls. The interplay of these effects leads to a complex temporal evolution of the quenching, which strongly depends on the incident electron dose per area. Time-resolved photoluminescence measurements on electron-irradiated samples reveal that the carbonaceous adlayer affects both the nonradiative and the radiative recombination dynamics." @default.
- W3102039040 created "2020-11-23" @default.
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- W3102039040 date "2016-10-07" @default.
- W3102039040 modified "2023-10-16" @default.
- W3102039040 title "Quenching of the luminescence intensity of GaN nanowires under electron beam exposure: impact of C adsorption on the exciton lifetime" @default.
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- W3102039040 doi "https://doi.org/10.1088/0957-4484/27/45/455706" @default.
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