The Effect of Ambient on Photoluminescence from GaN

The effect of ambient on photoluminescence (PL) from GaN was studied. We found that the PL intensity in vacuum was nearly four times higher than in air. The PL intensity also increased after etching the sample in Aqua Regia and BOE to remove the native oxide layer. After etching, the PL intensity wa...

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Main Author: Ruchala, Iwona
Format: Others
Published: VCU Scholars Compass 2011
Subjects:
Online Access:http://scholarscompass.vcu.edu/etd/226
http://scholarscompass.vcu.edu/cgi/viewcontent.cgi?article=1225&context=etd
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spelling ndltd-vcu.edu-oai-scholarscompass.vcu.edu-etd-12252017-03-17T08:29:18Z The Effect of Ambient on Photoluminescence from GaN Ruchala, Iwona The effect of ambient on photoluminescence (PL) from GaN was studied. We found that the PL intensity in vacuum was nearly four times higher than in air. The PL intensity also increased after etching the sample in Aqua Regia and BOE to remove the native oxide layer. After etching, the PL intensity was very stable in vacuum, but substantially degraded in air ambient. In HCl vapor (low pH), the PL intensity increased as compared to air ambient, while in NH3 vapor (high pH) it decreased. The quantum efficiency of the exciton and blue luminescence bands increased significantly with increasing excitation power density. This increase could not be explained by reduction of the depletion region width (field effect mechanism), but could be explained by changes in the nonradiative recombination rate at the surface (recombination mechanism). We therefore assume that in vacuum and acid vapor some surface species are desorbed or passivated, resulting in a decreased nonradiative recombination rate and increased PL intensity. 2011-05-06T07:00:00Z text application/pdf http://scholarscompass.vcu.edu/etd/226 http://scholarscompass.vcu.edu/cgi/viewcontent.cgi?article=1225&context=etd © The Author Theses and Dissertations VCU Scholars Compass Ambient on PL in GaN Physical Sciences and Mathematics Physics
collection NDLTD
format Others
sources NDLTD
topic Ambient on PL in GaN
Physical Sciences and Mathematics
Physics
spellingShingle Ambient on PL in GaN
Physical Sciences and Mathematics
Physics
Ruchala, Iwona
The Effect of Ambient on Photoluminescence from GaN
description The effect of ambient on photoluminescence (PL) from GaN was studied. We found that the PL intensity in vacuum was nearly four times higher than in air. The PL intensity also increased after etching the sample in Aqua Regia and BOE to remove the native oxide layer. After etching, the PL intensity was very stable in vacuum, but substantially degraded in air ambient. In HCl vapor (low pH), the PL intensity increased as compared to air ambient, while in NH3 vapor (high pH) it decreased. The quantum efficiency of the exciton and blue luminescence bands increased significantly with increasing excitation power density. This increase could not be explained by reduction of the depletion region width (field effect mechanism), but could be explained by changes in the nonradiative recombination rate at the surface (recombination mechanism). We therefore assume that in vacuum and acid vapor some surface species are desorbed or passivated, resulting in a decreased nonradiative recombination rate and increased PL intensity.
author Ruchala, Iwona
author_facet Ruchala, Iwona
author_sort Ruchala, Iwona
title The Effect of Ambient on Photoluminescence from GaN
title_short The Effect of Ambient on Photoluminescence from GaN
title_full The Effect of Ambient on Photoluminescence from GaN
title_fullStr The Effect of Ambient on Photoluminescence from GaN
title_full_unstemmed The Effect of Ambient on Photoluminescence from GaN
title_sort effect of ambient on photoluminescence from gan
publisher VCU Scholars Compass
publishDate 2011
url http://scholarscompass.vcu.edu/etd/226
http://scholarscompass.vcu.edu/cgi/viewcontent.cgi?article=1225&context=etd
work_keys_str_mv AT ruchalaiwona theeffectofambientonphotoluminescencefromgan
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