Presentation 1999/7/9
The Third Order Optical Nonlinear Susceptibilities in Compressively Strained QWs under the Population Inversion Condition
Haruhiko KUWATSUKA, Takasi SIMOYAMA, Hiroshi ISHIKAWA,
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Abstract(in Japanese) (See Japanese page)
Abstract(in English) The third order optical nonlinear susceptibilities χ^<(3)> in compressive-strained InGaAs/InGaAsP quantum wells (QWs) under the population inversion condition are discussed. The small effective mass of compressively strained QWs increases the contribution of the carrier density pulsation effect and the carrier heating effect to the χ^<(3)>. The hole burning effect is also increased due to the decrease of the carrier-carrier scattering rate. The calculation including these effects shows an enhancement of factor 3 due to O.8% compressive-strain. The values of the χ^<(3)> are experimentally estimated from the data of non-degenerate four-wave mixing in λ/4 shifted DFB lasers. The χ^<(3)> in 0.8% compressively strained QWs are three times larger than those in non-strained QWs with the same linear gain.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) wavelength conversion / third order optical nonlinear susceptibilities / four-wave mixing, quantum welts
Paper # LQE99-36
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Conference Information
Committee LQE
Conference Date 1999/7/9(1days)
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Paper Information
Registration To Lasers and Quantum Electronics (LQE)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) The Third Order Optical Nonlinear Susceptibilities in Compressively Strained QWs under the Population Inversion Condition
Sub Title (in English)
Keyword(1) wavelength conversion
Keyword(2) third order optical nonlinear susceptibilities
Keyword(3) four-wave mixing, quantum welts
1st Author's Name Haruhiko KUWATSUKA
1st Author's Affiliation Fujitsu Laboratories Ltd.()
2nd Author's Name Takasi SIMOYAMA
2nd Author's Affiliation Fujitsu Laboratories Ltd.
3rd Author's Name Hiroshi ISHIKAWA
3rd Author's Affiliation Fujitsu Laboratories Ltd.
Date 1999/7/9
Paper # LQE99-36
Volume (vol) vol.99
Number (no) 173
Page pp.pp.-
#Pages 6
Date of Issue