Ultrafast Spectroscopy of Hybrid Ingan/gan Quantum Wells
Group III nitrides are efficient light emitters. The modification of internal optoelectronic properties of these materials due to strain, external or internal electric field are an area of interest. Insertion of metal nanoparticles (MNPs) (Ag, Au etc) inside the V-shaped inverted hexagonal pits (IH...
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2012
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ndltd-unt.edu-info-ark-67531-metadc1496352020-07-15T07:09:31Z Ultrafast Spectroscopy of Hybrid Ingan/gan Quantum Wells Mahat, Meg Bahadur Ultrafast semiconductor quantum well Group III nitrides are efficient light emitters. The modification of internal optoelectronic properties of these materials due to strain, external or internal electric field are an area of interest. Insertion of metal nanoparticles (MNPs) (Ag, Au etc) inside the V-shaped inverted hexagonal pits (IHP) of InGaN/GaN quantum wells (QWs) offers the potential of improving the light emission efficiencies. We have observed redshift and blueshift due to the Au MNPs and Ag MNPs respectively. This shift could be due to the electric field created by the MNPs through electrostatic image charge. We have studied the ultrafast carrier dynamics of carriers in hybrid InGaN/GaN QWs. The change in quantum confinement stark effect due to MNPs plays an important role for slow and fast carrier dynamics. We have also observed the image charge effect on the ultrafast differential transmission measurement due to the MNPs. We have studied the non-linear absorption spectroscopy of these materials. The QWs behave as a discharging of a nanocapacitor for the screening of the piezoelectric field due to the photo-excited carriers. We have separated out screening and excitonic bleaching components from the main differential absorption spectra of InGaN/GaN QWs. University of North Texas Neogi, Arup Choi, Tae-Youl Weathers, Duncan L. Philipose, Usha 2012-08 Thesis or Dissertation Text https://digital.library.unt.edu/ark:/67531/metadc149635/ ark: ark:/67531/metadc149635 English Public Mahat, Meg Bahadur Copyright Copyright is held by the author, unless otherwise noted. All rights Reserved. |
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English |
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Ultrafast semiconductor quantum well |
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Ultrafast semiconductor quantum well Mahat, Meg Bahadur Ultrafast Spectroscopy of Hybrid Ingan/gan Quantum Wells |
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Group III nitrides are efficient light emitters. The modification of internal optoelectronic properties of these materials due to strain, external or internal electric field are an area of interest. Insertion of metal nanoparticles (MNPs) (Ag, Au etc) inside the V-shaped inverted hexagonal pits (IHP) of InGaN/GaN quantum wells (QWs) offers the potential of improving the light emission efficiencies. We have observed redshift and blueshift due to the Au MNPs and Ag MNPs respectively. This shift could be due to the electric field created by the MNPs through electrostatic image charge. We have studied the ultrafast carrier dynamics of carriers in hybrid InGaN/GaN QWs. The change in quantum confinement stark effect due to MNPs plays an important role for slow and fast carrier dynamics. We have also observed the image charge effect on the ultrafast differential transmission measurement due to the MNPs. We have studied the non-linear absorption spectroscopy of these materials. The QWs behave as a discharging of a nanocapacitor for the screening of the piezoelectric field due to the photo-excited carriers. We have separated out screening and excitonic bleaching components from the main differential absorption spectra of InGaN/GaN QWs. |
author2 |
Neogi, Arup |
author_facet |
Neogi, Arup Mahat, Meg Bahadur |
author |
Mahat, Meg Bahadur |
author_sort |
Mahat, Meg Bahadur |
title |
Ultrafast Spectroscopy of Hybrid Ingan/gan Quantum Wells |
title_short |
Ultrafast Spectroscopy of Hybrid Ingan/gan Quantum Wells |
title_full |
Ultrafast Spectroscopy of Hybrid Ingan/gan Quantum Wells |
title_fullStr |
Ultrafast Spectroscopy of Hybrid Ingan/gan Quantum Wells |
title_full_unstemmed |
Ultrafast Spectroscopy of Hybrid Ingan/gan Quantum Wells |
title_sort |
ultrafast spectroscopy of hybrid ingan/gan quantum wells |
publisher |
University of North Texas |
publishDate |
2012 |
url |
https://digital.library.unt.edu/ark:/67531/metadc149635/ |
work_keys_str_mv |
AT mahatmegbahadur ultrafastspectroscopyofhybridinganganquantumwells |
_version_ |
1719328056187813888 |