Presentation 2010-08-27
Surface plasmon enhanced light detection using free electron in metal
Makoto TOHYAMA, Takuma AIHARA, Kyohei NAKAGAWA, Kenzo YAMAGUCHI, Mitsuo FUKUDA,
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Abstract(in English) Photonic devices employing surface plasmons and optical near field are being actively developed as components of new opto-electronic integrated circuit in many laboratories because these devices are possibly with high density integrated beyond the diffraction limit of light. A schottky-type light detector composed of metal and semiconductor has been fabricated and demonstrated for development of light detector employing surface plasmons. Free electrons in metal were directly excited by incident light and detected as photocurrent. This excitation was enhanced by localized surface plasmon induced at the metal nanorods attached to the metal. These experimental results indicate the feasibility of surface plasmon detector using schottky-junction and metal nanorods.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) Surface plasmon / Photodiode / Metal nanorods / Schottky junction
Paper # EMD2010-58,CPM2010-74,OPE2010-83,LQE2010-56
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Committee LQE
Conference Date 2010/8/19(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) Surface plasmon enhanced light detection using free electron in metal
Sub Title (in English)
Keyword(1) Surface plasmon
Keyword(2) Photodiode
Keyword(3) Metal nanorods
Keyword(4) Schottky junction
1st Author's Name Makoto TOHYAMA
1st Author's Affiliation Toyohashi University of Technology()
2nd Author's Name Takuma AIHARA
2nd Author's Affiliation Toyohashi University of Technology
3rd Author's Name Kyohei NAKAGAWA
3rd Author's Affiliation Toyohashi University of Technology
4th Author's Name Kenzo YAMAGUCHI
4th Author's Affiliation Toyohashi University of Technology
5th Author's Name Mitsuo FUKUDA
5th Author's Affiliation Toyohashi University of Technology
Date 2010-08-27
Paper # EMD2010-58,CPM2010-74,OPE2010-83,LQE2010-56
Volume (vol) vol.110
Number (no) 181
Page pp.pp.-
#Pages 4
Date of Issue