We demonstrate a large nonlinear optical response of GaAs thin films using degenerate four-wave mixing (DFWM) with picosecond pulses. The obtained DFWM signal is thickness-dependent and peaks at around 110 nm. The nonlocal theory fully explains these results.
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Koichi AKIYAMA, Nobuyuki TOMITA, Yoshinori NOMURA, Toshiro ISU, Hajime ISHIHARA, Kikuo CHO, "Large Third Order Nonlinear Optical Response of Exciton by Controlling the Thickness of GaAs Thin Films" in IEICE TRANSACTIONS on Electronics,
vol. E83-C, no. 6, pp. 936-937, June 2000, doi: .
Abstract: We demonstrate a large nonlinear optical response of GaAs thin films using degenerate four-wave mixing (DFWM) with picosecond pulses. The obtained DFWM signal is thickness-dependent and peaks at around 110 nm. The nonlocal theory fully explains these results.
URL: https://global.ieice.org/en_transactions/electronics/10.1587/e83-c_6_936/_p
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@ARTICLE{e83-c_6_936,
author={Koichi AKIYAMA, Nobuyuki TOMITA, Yoshinori NOMURA, Toshiro ISU, Hajime ISHIHARA, Kikuo CHO, },
journal={IEICE TRANSACTIONS on Electronics},
title={Large Third Order Nonlinear Optical Response of Exciton by Controlling the Thickness of GaAs Thin Films},
year={2000},
volume={E83-C},
number={6},
pages={936-937},
abstract={We demonstrate a large nonlinear optical response of GaAs thin films using degenerate four-wave mixing (DFWM) with picosecond pulses. The obtained DFWM signal is thickness-dependent and peaks at around 110 nm. The nonlocal theory fully explains these results.},
keywords={},
doi={},
ISSN={},
month={June},}
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TY - JOUR
TI - Large Third Order Nonlinear Optical Response of Exciton by Controlling the Thickness of GaAs Thin Films
T2 - IEICE TRANSACTIONS on Electronics
SP - 936
EP - 937
AU - Koichi AKIYAMA
AU - Nobuyuki TOMITA
AU - Yoshinori NOMURA
AU - Toshiro ISU
AU - Hajime ISHIHARA
AU - Kikuo CHO
PY - 2000
DO -
JO - IEICE TRANSACTIONS on Electronics
SN -
VL - E83-C
IS - 6
JA - IEICE TRANSACTIONS on Electronics
Y1 - June 2000
AB - We demonstrate a large nonlinear optical response of GaAs thin films using degenerate four-wave mixing (DFWM) with picosecond pulses. The obtained DFWM signal is thickness-dependent and peaks at around 110 nm. The nonlocal theory fully explains these results.
ER -