Discharge property between magnesium oxide films with various true densities
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概要
- 論文の詳細を見る
MgO films were synthesized on stainless steel electrodes by a chemical-vapor-deposition method operated under atmosphere to reduce a discharge inception voltage in diode type discharge system under 6%Xe + 94%Ne atmosphere. The relationship between crystalline perfection of the MgO film and discharge inception voltage was investigated. In this study, crystalline perfection is quantified by the true density of the film. The discharge inception voltage was varied with the true density of the MgO film. The MgO film with 87% of the theoretical density indicated a minimum discharge inception voltage under various gas pressures and electrode distances.
- 公益社団法人 日本セラミックス協会の論文
- 2009-06-01
著者
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斎藤 秀俊
長岡技術科学大学
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Saitoh Hidetoshi
Crest Japan Science And Technology Agency
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Saitoh Hidetoshi
慶応義塾大学 放射線科学
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OHSHIO Shigeo
Department of Chemistry, Nagaoka University of Technology
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SAITOH Hidetoshi
Department of Chemistry, Nagaoka University of Technology
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Shimotono Hidetoshi
Department Of Physics Kyoto University
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Saitoh Hidetoshi
Department Of Bioresource Science Obihiro University Of Agriculture And Veterinary Medicine
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Takano Akihiro
Department Of Material Science And Technology Nagaoka University Of Technology
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AKASAKA Hiroki
Department of Physical Chemistry, Hoshi University
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WASHIO Tsukasa
Department of Chemistry, Nagaoka University of Technology
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Saitoh Hidetoshi
School Of Radiologic Sciences Tokyo Metropolitan University Of Health Sciences
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斉藤 博
Department Of Material Science And Technology Nagaoka University Of Technology
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Ohshio S
Department Of Material Science And Technology Nagaoka University Of Technology
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Ohshio Shigeo
Department Of Chemistry Nagaoka University Of Technology
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Akasaka H
Information Storage Products Department Nikon Corporation
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Washio Tsukasa
Department Of Material Science And Technology Nagaoka University Of Technology
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Saitoh Hidetoshi
Department Of Radiological Sciences Ibaraki Prefectural University Of Health Sciences
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KAWAGUCHI Shinnosuke
Department of Material Science and Technology, Nagaoka University of Technology
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Akasaka Hiroki
Department Of Chemistry Nagaoka University Of Technology
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Kawaguchi Shinnosuke
Department Of Material Science And Technology Nagaoka University Of Technology
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Satoh Hitoshi
Ibaraki Prefectural Univ. Dept. Radilogical Sci.
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