Numerical investigation of the plasma-aided fabrication of stoichiometric InAs nanodots at early stage of the growth

Using numerical modeling of the plasma sheath and key surface processes, the plasma-aided fabrication of InAs nanodots is investigated at early stage of the growth. Roles of different plasma process parameters, such as electron temperature, electron number density, and ion-to-electron density ratio...

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Main Authors: Alizadeh, M., Mehdipour, H., Goh, B.T., Rahman, S.A.
Format: Article
Language:English
Published: American Institute of Physics 2013
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Online Access:http://eprints.um.edu.my/10638/1/00006469_100295.pdf
http://eprints.um.edu.my/10638/
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spelling my.um.eprints.106382014-06-19T08:25:58Z http://eprints.um.edu.my/10638/ Numerical investigation of the plasma-aided fabrication of stoichiometric InAs nanodots at early stage of the growth Alizadeh, M. Mehdipour, H. Goh, B.T. Rahman, S.A. QC Physics Using numerical modeling of the plasma sheath and key surface processes, the plasma-aided fabrication of InAs nanodots is investigated at early stage of the growth. Roles of different plasma process parameters, such as electron temperature, electron number density, and ion-to-electron density ratio, in achieving the stoichiometric growth of the nanodots are explored and conditions to achieve a highly stoichiometric InAs composition are discussed. It is shown that the nanodots get larger with increasing the electron temperature and electron number density, whereas they shrink in size with increasing the ion-to-electron density ratio. Moreover, it is shown that with increase in the electron temperature and electron number density stoichiometric saturation state can be reached shortly, which this enables the fabrication of highly stoichiometric array of nanodots within shorter processing time. The results obtained can open a path toward nucleation and growth of an array of nanodots with desired structural composition and size distribution. American Institute of Physics 2013 Article PeerReviewed application/pdf en http://eprints.um.edu.my/10638/1/00006469_100295.pdf Alizadeh, M. and Mehdipour, H. and Goh, B.T. and Rahman, S.A. (2013) Numerical investigation of the plasma-aided fabrication of stoichiometric InAs nanodots at early stage of the growth. Journal of Applied Physics, 114. ISSN 0021-8979
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
language English
topic QC Physics
spellingShingle QC Physics
Alizadeh, M.
Mehdipour, H.
Goh, B.T.
Rahman, S.A.
Numerical investigation of the plasma-aided fabrication of stoichiometric InAs nanodots at early stage of the growth
description Using numerical modeling of the plasma sheath and key surface processes, the plasma-aided fabrication of InAs nanodots is investigated at early stage of the growth. Roles of different plasma process parameters, such as electron temperature, electron number density, and ion-to-electron density ratio, in achieving the stoichiometric growth of the nanodots are explored and conditions to achieve a highly stoichiometric InAs composition are discussed. It is shown that the nanodots get larger with increasing the electron temperature and electron number density, whereas they shrink in size with increasing the ion-to-electron density ratio. Moreover, it is shown that with increase in the electron temperature and electron number density stoichiometric saturation state can be reached shortly, which this enables the fabrication of highly stoichiometric array of nanodots within shorter processing time. The results obtained can open a path toward nucleation and growth of an array of nanodots with desired structural composition and size distribution.
format Article
author Alizadeh, M.
Mehdipour, H.
Goh, B.T.
Rahman, S.A.
author_facet Alizadeh, M.
Mehdipour, H.
Goh, B.T.
Rahman, S.A.
author_sort Alizadeh, M.
title Numerical investigation of the plasma-aided fabrication of stoichiometric InAs nanodots at early stage of the growth
title_short Numerical investigation of the plasma-aided fabrication of stoichiometric InAs nanodots at early stage of the growth
title_full Numerical investigation of the plasma-aided fabrication of stoichiometric InAs nanodots at early stage of the growth
title_fullStr Numerical investigation of the plasma-aided fabrication of stoichiometric InAs nanodots at early stage of the growth
title_full_unstemmed Numerical investigation of the plasma-aided fabrication of stoichiometric InAs nanodots at early stage of the growth
title_sort numerical investigation of the plasma-aided fabrication of stoichiometric inas nanodots at early stage of the growth
publisher American Institute of Physics
publishDate 2013
url http://eprints.um.edu.my/10638/1/00006469_100295.pdf
http://eprints.um.edu.my/10638/
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score 13.211869