Oscillatory optical second-harmonic generation from Si(001) surface during thin-film epitaxy

Applied Physics Letters

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Main Authors: Tok, E.S., Price, R.W., Taylor, A.G., Zhang, J.
Other Authors: MATERIALS SCIENCE
Format: Article
Published: 2014
Online Access:http://scholarbank.nus.edu.sg/handle/10635/107158
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Institution: National University of Singapore
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spelling sg-nus-scholar.10635-1071582015-02-02T06:13:41Z Oscillatory optical second-harmonic generation from Si(001) surface during thin-film epitaxy Tok, E.S. Price, R.W. Taylor, A.G. Zhang, J. MATERIALS SCIENCE Applied Physics Letters 76 7 933-935 APPLA 2014-10-29T08:40:18Z 2014-10-29T08:40:18Z 2000-02-14 Article Tok, E.S.,Price, R.W.,Taylor, A.G.,Zhang, J. (2000-02-14). Oscillatory optical second-harmonic generation from Si(001) surface during thin-film epitaxy. Applied Physics Letters 76 (7) : 933-935. ScholarBank@NUS Repository. 00036951 http://scholarbank.nus.edu.sg/handle/10635/107158 NOT_IN_WOS Scopus
institution National University of Singapore
building NUS Library
country Singapore
collection ScholarBank@NUS
description Applied Physics Letters
author2 MATERIALS SCIENCE
author_facet MATERIALS SCIENCE
Tok, E.S.
Price, R.W.
Taylor, A.G.
Zhang, J.
format Article
author Tok, E.S.
Price, R.W.
Taylor, A.G.
Zhang, J.
spellingShingle Tok, E.S.
Price, R.W.
Taylor, A.G.
Zhang, J.
Oscillatory optical second-harmonic generation from Si(001) surface during thin-film epitaxy
author_sort Tok, E.S.
title Oscillatory optical second-harmonic generation from Si(001) surface during thin-film epitaxy
title_short Oscillatory optical second-harmonic generation from Si(001) surface during thin-film epitaxy
title_full Oscillatory optical second-harmonic generation from Si(001) surface during thin-film epitaxy
title_fullStr Oscillatory optical second-harmonic generation from Si(001) surface during thin-film epitaxy
title_full_unstemmed Oscillatory optical second-harmonic generation from Si(001) surface during thin-film epitaxy
title_sort oscillatory optical second-harmonic generation from si(001) surface during thin-film epitaxy
publishDate 2014
url http://scholarbank.nus.edu.sg/handle/10635/107158
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