Zero-Phonon Lines Associated with Self-Trapped Exciton States and Exciton Dynamics in β-Perylene
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概要
- 論文の詳細を見る
Low temperature luminescence and absorption spectra in /7-perylene crystalsare investigated. Zero-phonon transitions in which self-trapped exciton statesparticipate in as the initial or final state are found below 30 K. The self-trapdepth for the shallower self-trapped exciton state is found to be 95 cm ' and forthe deeper self-trapped exciton state 187 cm ". Lattice configurations for self-trapped states are suggested to be one-center type for the deeper self-trappedexciton state and two-center type for the shallower self-trapped exciton state.Based on the discussion about the intensities of zero-phonon lines, it is suggestedth'at phonons of the energies of 13.3 cm " are taking part in relaxating freeexcitons into the shallower self-trapped excitons and 22 cm- ' into the deeper self-trapped excitons.
- 社団法人日本物理学会の論文
- 1984-08-15
著者
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NISHIMURA Hitoshi
Departments of Oral Surgery, Nihon University School of Dentistry at Matsudo
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MIZUNO Kiyoshi
Department of physics,Tokyo Metropolitan University
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MATSUI Atsuo
Department of Physics,Konan University
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Nishimura H
Department Of Physics Faculty Of Science Osaka City University
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Mizuno K
Defence Evaluation And Res. Agency Malvern Worcestershire Gbr
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Mizuno Kenichi
Department Of Physics Konan Univ.
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Nishimura Hitoshi
Department Of Applied Physics Osaka City University
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Nishimura H
Kasugai Branch Of The Gaseous Electronics Institute
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Mizuno K
Department Of Material Science Faculty Of Science And Engineering Shimane University
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Mizuno Kiyoshi
Faculty Of Integrated Arts And Science Tokushima University
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Matsui A
Konan Univ. Kobe
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Matsui Atsuo
Department Of Physics Faci4ty Of Science Kyoto University
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Mizuno Ken-ichi
Department Of Physics Konan University
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Nishimura Hitoshi
Department Of Analytical And Bioinorganic Chemistry Kyoto Pharmaceutical University
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Nishimura Hiroshi
Department Of Physics Faculty Of Science Osaka University
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Nishimura Hitoshi
Kasugai Branch of the Gaseous Electronics Institute
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Mizuno Ken-ichi
Department of Material Science, Faculty of Science and Engineering, Shimane University
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