Presentation 2003/10/14
The Detection Characteristics of Optically Scanning Electromagnetic Field Probes
Satoru ARAKAWA, Eiji SUZUKI, Hiroyasu OTA, Kenichi ARAI,
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Abstract(in English) In order to perform electromagnetic near-field measurement in the GHZ frequency range, we are developing the optically scanning electromagnetic field probe system. The probe system carries out incidence of the laser beam scanned at high speed to an optical crystal and uses electro-optic effect and magneto-optic effect for electromagnetic field detection. In this paper, the detection characteristics of optically scanning electromagnetic field probes was examined by FDTD method simulation and experiment.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) Electromagnetic Near-Field / Electromagnetic Field Probe / Electro-Optic Effect / Magneto-Optic Effect / FDTD method
Paper # EMCJ2003-89,MW2003-186
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Committee EMCJ
Conference Date 2003/10/14(1days)
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Registration To Electromagnetic Compatibility (EMCJ)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) The Detection Characteristics of Optically Scanning Electromagnetic Field Probes
Sub Title (in English)
Keyword(1) Electromagnetic Near-Field
Keyword(2) Electromagnetic Field Probe
Keyword(3) Electro-Optic Effect
Keyword(4) Magneto-Optic Effect
Keyword(5) FDTD method
1st Author's Name Satoru ARAKAWA
1st Author's Affiliation Sendai EMC Research Center, Telecommunications Advancement Organization of Japan()
2nd Author's Name Eiji SUZUKI
2nd Author's Affiliation Sendai EMC Research Center, Telecommunications Advancement Organization of Japan
3rd Author's Name Hiroyasu OTA
3rd Author's Affiliation Sendai EMC Research Center, Telecommunications Advancement Organization of Japan
4th Author's Name Kenichi ARAI
4th Author's Affiliation Sendai EMC Research Center, Telecommunications Advancement Organization of Japan:Research Institute of Electrical Communication, Tohoku University
Date 2003/10/14
Paper # EMCJ2003-89,MW2003-186
Volume (vol) vol.103
Number (no) 370
Page pp.pp.-
#Pages 6
Date of Issue