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Femtosecond time-resolved exciton recombination dynamics in ZnO microcrystallite thin films at room temperature
Zhang W.-L.3; Chai L.1; Xing Q.-R.3; Wang Q.-Y.3; Wong K.S.2; Yu P.2; Wang H.2; Tang Z.K.2; Wong G.K.L.2
1999-12-01
Source PublicationChinese Physics Letters
ISSN0256307X
Volume16Issue:10Pages:728-730
Abstract

We report the femtosecond time-resolved studies of room temperature exciton recombination and ultrafast stimulated emission dynamics in ZnO microcrystallite thin films. A free exciton photoluminescence lifetime of a few tens of picoseconds and a decay time of a few picoseconds for the stimulated emission were observed. The relatively slow rise time (3 ps) for the P band as the result of exciton-exciton scattering compared with the 0.8 ps rise time for the N band attributed to electron-hole plasma recombination clearly distinguished the two stimulated emission processes.

DOI10.1088/0256-307X/16/10/010
URLView the original
Language英語English
WOS IDWOS:000083261500010
Scopus ID2-s2.0-0033416572
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Citation statistics
Document TypeJournal article
CollectionUniversity of Macau
Affiliation1.Tianjin University
2.Hong Kong University of Science and Technology
3.Sch. Prec. Instrum. Optoelectronics
Recommended Citation
GB/T 7714
Zhang W.-L.,Chai L.,Xing Q.-R.,et al. Femtosecond time-resolved exciton recombination dynamics in ZnO microcrystallite thin films at room temperature[J]. Chinese Physics Letters, 1999, 16(10), 728-730.
APA Zhang W.-L.., Chai L.., Xing Q.-R.., Wang Q.-Y.., Wong K.S.., Yu P.., Wang H.., Tang Z.K.., & Wong G.K.L. (1999). Femtosecond time-resolved exciton recombination dynamics in ZnO microcrystallite thin films at room temperature. Chinese Physics Letters, 16(10), 728-730.
MLA Zhang W.-L.,et al."Femtosecond time-resolved exciton recombination dynamics in ZnO microcrystallite thin films at room temperature".Chinese Physics Letters 16.10(1999):728-730.
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