ID | 111097 |
著者 |
Ota, Hiroto
Tokushima University
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資料タイプ |
学術雑誌論文
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抄録 | We have investigated a GaAs/AlAs triple-coupled multilayer cavity structure with InAs quantum dots for an ultrafast wavelength conversion device. Three cavity modes with the resonance frequencies ω1, ω2, and ω3 were used for efficient wavelength conversion via a four-wave mixing (FWM) process. Identical frequency separation between two adjacent modes (ω1 − ω2 = ω2 − ω3) was successfully realized using a controlled lateral thickness variation across the wafer. Time-resolved FWM signals from the triple-coupled multilayer cavity were measured using 100 fs laser pulses. The incident laser pulses were divided into two pulses and each of them was spectrally shaped individually so that the input and control pulses only covered the ω1 and ω2 modes, respectively. The wavelength-converted FWM signal with a frequency of ω3 (= 2ω2 − ω1) was clearly observed when the sample was simultaneously irradiated with the input and control laser pulses.
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掲載誌名 |
Japanese Journal of Applied Physics
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ISSN | 13474065
00214922
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cat書誌ID | AA12295836
AA11509854
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出版者 | The Japan Society of Applied Physics
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巻 | 56
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号 | 4S
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開始ページ | 04CH02
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発行日 | 2017-02-21
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権利情報 | © 2017 The Japan Society of Applied Physics
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EDB ID | |
出版社版DOI | |
出版社版URL | |
フルテキストファイル | |
言語 |
eng
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著者版フラグ |
著者版
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部局 |
理工学系
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