Presentation 2001/10/19
Submillmeter-wave Propagation Characteristics of 500 GHz Two-Layer Dielectric Waveguide Periodically Loaded with Solid-State Plasma Rods
Nobuaki FUKAZAWA, Shinichi YODOKAWA, Satoru KOUSAKA, Tetsuo OBUNAI,
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Abstract(in Japanese) (See Japanese page)
Abstract(in English) Submillimeter-wave transmission characteristics of 500 GHz p-InSb imageguide periodically loaded with solid-plasma rods have been analyzed with FDTD method. The results clearly show that this structure works as a submillimeter-wave filter device, and that its propagation characteristics can be varied by applying a static magnetic field, or by varying the dimensions or the density of the plasma.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) millimeter wave / sub-millimeter wave / solid-state plasma / InSb / periodic structure
Paper # EMCJ2001-76,MW2001-94
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Committee EMCJ
Conference Date 2001/10/19(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) Submillmeter-wave Propagation Characteristics of 500 GHz Two-Layer Dielectric Waveguide Periodically Loaded with Solid-State Plasma Rods
Sub Title (in English)
Keyword(1) millimeter wave
Keyword(2) sub-millimeter wave
Keyword(3) solid-state plasma
Keyword(4) InSb
Keyword(5) periodic structure
1st Author's Name Nobuaki FUKAZAWA
1st Author's Affiliation Akita University, Faculty of Engineering and Resource Science, Department of Electrical and Electronic Engineering()
2nd Author's Name Shinichi YODOKAWA
2nd Author's Affiliation Akita University, Faculty of Engineering and Resource Science, Department of Electrical and Electronic Engineering
3rd Author's Name Satoru KOUSAKA
3rd Author's Affiliation Akita University, Faculty of Engineering and Resource Science, Department of Electrical and Electronic Engineering
4th Author's Name Tetsuo OBUNAI
4th Author's Affiliation Akita University, Faculty of Engineering and Resource Science, Department of Electrical and Electronic Engineering
Date 2001/10/19
Paper # EMCJ2001-76,MW2001-94
Volume (vol) vol.101
Number (no) 392
Page pp.pp.-
#Pages 6
Date of Issue