Fujisawa Hironori | Department Of Electrical Electronic And Computer Engineering Graduate School Of Engineering Hitneji
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- 同名の論文著者
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関連著者
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Fujisawa Hironori
Department Of Electrical Electronic And Computer Engineering Graduate School Of Engineering Hitneji
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Shimizu M
Advanced Industrial Science And Technology (aist) Power Electronics Research Center
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Funakubo H
Dep. Of Innovative And Engineered Materials Tokyo Inst. Of Technol.
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Shimizu Mitsuaki
Power Electronics Research Center National Institute Of Advanced Industrial Science And Technology
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Shimizu Masahiro
Ulsi Development Center Mitsubishi Electric Corporation
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Funakubo Hiroshi
Department Of Innovative And Engineered Materials
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FUNAKUBO Hiroshi
Department of Innovative and Engineered Materials, Interdisciplinary Graduate School, Tokyo Institut
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Funakubo H
Tokyo Inst. Technol. Yokohama Jpn
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Mitsugi Satoshi
Precision And Intelligence Laboratory Tokyo Institute Of Technology
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Shimizu M
Tokyo Inst. Technology Yokohama
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Fujisawa Hironori
Graduate School Of Engineering University Of Hyogo
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舟窪 浩
東京工業大学大学院 総合理工学研究科 物質科学創造専攻
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SAITO Keisuke
Application Laboratory
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Saito K
Institute Of Industrial Science University Of Tokyo
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Saito Keisuke
Application Laboratory Analytical Division Philips Japan Ltd.
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Saito Kenichi
Institute Of Industrial Science University Of Tokyo
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丹生 博彦
兵庫県立大学大学院工学研究科 電気系工学専攻:姫路工業大学大学院工学研究科 電気系工学専攻
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藤沢 浩訓
姫路工業大学大学院工学研究科電気系工学専攻
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清水 勝
姫路工業大学大学院工学研究科電気系工学専攻
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舟窪 浩
東工大院総合理工学研究科
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丹生 博彦
姫路工業大学大学院工学研究科電気系工学専攻
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FUJISAWA Hironori
Department of Electrical Engineering and Computer Sciences, Graduate School of Engineering, Universi
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SHIMIZU Masaru
Department of Electrical Engineering and Computer Sciences, Graduate School of Engineering, Universi
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NUKAGA Norimasa
Department of Innovative and Engineered Materials, Interdisciplinary Graduate School, Tokyo Institut
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WATANABE Takayuki
Department of Innovative and Engineered Materials, Interdisciplinary Graduate School, Tokyo Institut
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Funakubo Hiroshi
Department Of Innovative And Engineered Materials Interdisciplinary Graduated School Of Science And
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Watanabe Toshihide
Atr Adaptive Communications Research Laboratories:(present Address)nhk Science And Technical Researc
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Watanabe T
Department Of Innovative And Engineered Materials Interdisciplinary Graduate School Of Science And E
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Niu Hirohiko
Department Of Electrical Engineering And Computer Sciences Graduate School Of Engineering University
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AKIYAMA Kensuke
Kanagawa Industrial Technology Research Institute
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NIU Hirohiko
Department of Electrical Engineering and Computer Sciences, Graduate School of Engineering, Universi
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Katoda Takashi
Dep. Of Electronic And Photonic Systems Engineering Kochi Univ. Of Technol.
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Honda Koichiro
Fujitsu Lab. Ltd. Kanagawa Jpn
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KOBUNE Masafumi
Department of Material Science Chemistry, Graduate School of Engineering, University of Hyogo
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KANEKO Satoru
Kanagawa Industrial Technology Research Institute
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石川 賢司
静大電子研
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Ishikawa K
Department Of Organic And Polymeric Materials Tokyo Institute Of Technology
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石川 賢司
四日市大学総合政策学部
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MITSUYA MASATOSHI
Department of Radiology, Tohoku University School of Medicine
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清水 勝
兵庫県立大学大学院 工学研究科
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藤沢 浩訓
兵庫県立大学大学院 工学研究科
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岡庭 守
姫路工業大学大学院工学研究科
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OHYA Seishiro
Kanagawa Industrial Technology Research Institute
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TAKAHASHI Kenji
Department of Radiological Life Sciences, Hirosaki University Graduate School of Health Sciences
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Kimura Takeshi
Department of Cardiovascular Medicine, Kyoto University Hospital
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本田 耕一郎
富士通研究所
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本田 耕一郎
富士通研
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Osada M
National Inst. For Materials Sci. Tsukuba Jpn
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Osada M
Advanced Materials Laboratory National Institute For Materials Science
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Kimura Takeshi
Department Of Cardiology Kobe City Medical Center General Hospital
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Takahashi Kenji
Department Of Orthopaedics Graduate School Of Medical Science Kyoto Prefectural University Of Medici
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Yuasa Hiroyasu
Kanagawa Industrial Technology Center Kanagawa Prefectural Government
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SUZUKI Tatsuya
Research Laboratory for Nuclear Reactors, Tokyo Institute of Technology
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野々村 哉
姫路工業大学大学院工学研究科電気系工学専攻
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Fujimoto Masahiro
Faculty Of Engineering Hiroshima University
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KOTAKA Yasutoshi
Fujitsu Laboratories Ltd.
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HONDA Koichiro
Fujitsu Laboratories Ltd.
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野々村 哉
姫路工業大学大学院工学研究科 電気系工学専攻
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Suzuki Takamasa
Department Of Electronics Nagoya University:r&d Department Nippondenso Co. Ltd.
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Suzuki T
Free Electron Laser Research Institute Inc.
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Suzuki T
Taiyo Yuden Co. Ltd. Gunma Jpn
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Suzuki T
Nhk (japan Broadcasting Corp.) Tokyo
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Honda K
Fujitsu Laboratories Ltd.
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SUZUKI Toshimasa
Taiyo Yuden Co., Ltd.,
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FUJIMOTO Masayuki
Taiyo Yuden Co., Ltd.,
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SAITO Keisuke
BRUKER AXS K.K.
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KAKIHANA Masato
Materials and Structures Laboratory Tokyo Institute of Technology
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Shimizu Yoshitada
Kanagawa Industrial Technology Research Institute
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MITSUHASHI Masahiko
Kanagawa Industrial Technology Research Institute
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SAITO Keisuke
Philips Japan, Ltd
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Suzuki Tatsuro
Department Of Electrical Engineering Shizuoka University
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Nonomura Hajime
Department Of Electrical Engineering And Computer Sciences Graduate School Of Engineering University
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NISHI Yuji
Taiyo Yuden Co., Ltd.
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Suzuki Tatsuhiko
Department Of Electrical Engineering Faculty Of Engineering Science University Of Tokyo
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Fujimoto Masayuki
Taiyo Yuden Co. Lid.
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Matsuura Osamu
Department Of Urology Shakai Hoken Chukyo Hospital
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Matsuura Osamu
Department Of Applied Chemistry Faculty Of Engineering Himeji Institute Of Technology
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Morioka Hitoshi
Application Scientist Xrd For Thin Film Bruker Axs K.k.
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藤沢 浩訓
姫路工大・工学研究科
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清水 勝
姫路工大・工学研究科
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HONDA Kazutaka
Department of Crystalline Materials Science, Graduate School of Engineering, Nagoya University
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Abe Takumi
Department Of Advanced Materials Science Graduate School Of Frontier Sciences University Of Tokyo
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AKAI Tomonori
Department of Advanced Materials Science, Graduate School of Frontier Sciences, University of Tokyo
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Funakubo Hiroshi
Department Of Innovative And Engineered Materials Interdisciplinary Graduate School Of Science And E
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NAKAKI Hiroshi
Department of Innovative and Engineered Materials, Interdisciplinary Graduate School of Science and
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IKARIYAMA Rikyu
Department of Innovative and Engineered Materials, Interdisciplinary Graduate School of Science and
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KUROSAWA Toshiyuki
Bruker AXS
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Tanaka M
Mitsubishi Electric Co. Ltd. Hyogo Jpn
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Kuri Ryohei
Department Of Electrical Engineering And Computer Sciences Graduate School Of Engineering University
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Nakaki Hiroshi
Department Of Innovative And Engineered Materials Interdisciplinary Graduate School Of Science And E
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Nakaki Hiroshi
Department Of Chemistry Sophia University
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YOKOYAMA Shintaro
Department of Innovative and Engineered Materials, Tokyo Institute of Technology
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OIKAWA Takahiro
Department of Innovative and Engineered Materials, Tokyo Institute of Technology
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YOSHIMOTO Mamoru
Materials and Structures Laboratory Tokyo Institute of Technology
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Osada Minoru
Material And Structures Lab. Tokyo Inst. Tech.
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HIRABAYASHI Yasuo
Kanagawa Industrial Technology Research Institute
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ITO Takeshi
Kanagawa Industrial Technology Research Institute
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YUASA Hiroyasu
Kanagawa Industrial Technology Research Institute
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OKAMOTO Shoji
Department of Innovative and Engineered Materials, Tokyo Institute of Technology
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MATSUZAKI Tomoaki
Department of Applied Chemistry Faculty of Engineering, Himeji Institute of Technology
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Ikariyama Rikyu
Department Of Innovative And Engineered Materials Interdisciplinary Graduate School Of Science And E
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SUZUKI Muneyasu
Faculty of Science and Technology Tokyo University of Science
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NAGATA Hajime
Faculty of Science and Technology Tokyo University of Science
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TAKENAKA Tadashi
Faculty of Science and Technology Tokyo University of Science
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SUGITA Yasuo
Department of Pathology and Biodefense, Saga University, Faculty of Medicine
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Morioka Hitoshi
Department of Innovative and Engineered Materials, Tokyo Institute of Technology
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YAMADA Tomoaki
Department of Innovative and Engineered Materials, Tokyo Institute of Technology
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UCHIDA Hiroshi
Department of Materials and Life Sciences, Sophia University
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塩嵜 忠
奈良先端科学技術大学院大学物質創成科学研究科
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Sugita Yasuo
佐賀医科大学 病因病態科学
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Yasuo Sugita
Department Of Pathology Kurume University School Of Medicine
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TAKANO Mikio
Institute for Chemical Research, Kyoto University
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AZUMA Masaki
Institute for Chemical Research, Kyoto University
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SHIMAKAWA Yuichi
Institute for Chemical Research, Kyoto University
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FUKUSHIMA Koji
Department of Internal Medicine, Tohoku University Hospital
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渡辺 和人
都立産技高専
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山崎 貴司
富士通研究所
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小高 康稔
富士通研究所
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堀内 敏行
東京電機大学工学部
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KIM Yong
Department of Metallurgy and Materials Science, Hanyang University
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ABE Toshi
Department of Radiology, Kurume University School of Medicine
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KURI Ryohei
Department of Electrical Engineering and Computer Sciences, Graduate School of Engineering, Universi
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山崎 貴司
東理大理
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渡辺 和人
産業技術高専
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藤沢 浩訓
兵庫県大
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清水 勝
兵庫県大
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丹生 博彦
兵庫県立大学大学院工学研究科 電気系工学専攻
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NONOMURA Hajime
Department of Electrical Engineering and Computer Sciences, Graduate School of Engineering, Universi
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丹生 博彦
姫路工大・工学研究科
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小高 康稔
東大工
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ITO Shinichi
Department of Pediatrics and Child Health, Kurume University School of Medicine
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松重 和美
Dep. Of Electronic Sci. And Engineering Kyoto Univ. Katsura Nishikyo Kyoto 615-8510 Japaninnovative
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松岡 裕益
姫路工業大学工学部電子工学科
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FUJII Satoshi
Department of Neurosurgery, Yokohama City University School of Medicine
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村田 周平
姫路工業大学工学部電子工学科
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板東 達也
姫路工業大学工学部電子工学科
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Mitsui T
Crest Japan Science And Technology Agency:japan Atomic Energy Agency
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Sakai T
Tokyo Inst. Technol. Kanagawa Jpn
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石川 賢司
Shinshu Univ. Nagano Jpn
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Fujisawa Takashi
Department of Internal Medicine, Harima Hospital of Ishikawajima-Harima Heavy Industries, Health Ins
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Osada Minoru
Presto Japan Science And Technology Corporation (jst)
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Uchida H
Department Of Chemistry Faculty Of Science And Technology Sophia University
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Abe Toshi
Department Of Radilogy School Of Medicine Kurume University
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MORIMOTO Koji
Department of Breast and Endocrine Surgery, Osaka University Graduate School of Medicine
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Ohta Tetsuo
Department Of Biomedical Information Doshisha University
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Kida Shinya
Department Of Neurosurgery Graduate School Of Medical Science Kanazawa University
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Sugita Yasuo
Department Of Pathology Kurume University School Of Medicine
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Takano M
Institute For Chemical Research Kyoto University
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Takano Mikio
Institute For Integrated Cell-material Sciences Kyoto University
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Takano Mikio
Institute For Chemical Research (icr) Kyoto University
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Morimoto Koji
Department Of Electronics Faculty Of Engineering Himeji Institute Of Technology
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Funakubo Hiroshi
Department Of Innovative And Engineered Materials Tokyo Institute Of Technology
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Sakai Tomohiro
Department Of Innovative And Engineered Materials Tokyo Institute Of Technology
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Sakai Tomohiro
Department Of Innovative And Engineered Materials Interdisciplinary Graduate School Of Science And E
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Oshima Yuki
Department of Biology, Faculty of Education and Integrated Arts and Sciences, Waseda University
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Morioka Hitoshi
Department Of Gynecology Saiseikai Shimonoseki General Hospital
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Shiosaki Tadashi
Department of Electronic, Faculty of Engineering, Kyoto University
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Azuma M
Institute For Chemical Research Kyoto University
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Azuma Masaki
Institute For Chemical Research Kyoto University
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Liu Jin
Materials And Structures Laboratory Tokyo Institute Of Technology
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SASAKI Atsushi
Materials and Structures Laboratory Tokyo Institute of Technology
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YASAKA Shinji
Kanagawa Industrial Technology Research Institute
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FUNAKUBO Hiroshi
Kanagawa Industrial Technology Research Institute
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SAKAMA Hiroshi
Department of Applied Physics, The University of Tokyo
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Iwamoto Naoya
Department Of Materials Science And Chemical Engineering Kitakyushu National College Of Technology
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ICHIKAWA Noriya
Department of Physics, Sophia University
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ARAI Masaya
Department of Physics, Sophia University
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IMAI Yusuke
Department of Physics, Sophia University
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HAGIWARA Kei
Department of Physics, Sophia University
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YONETANI Masashi
Graduate School of Engineering, University of Hyogo
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FUJISAWA Hironori
Graduate School of Engineering, University of Hyogo
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SHIMIZU Masaru
Graduate School of Engineering, University of Hyogo
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ISHIKAWA Kenya
Research Institute of Electrical Communication, Tohoku University
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CHO Yasuo
Research Institute of Electrical Communication, Tohoku University
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SAWADA Tatsuya
Department of Applied Chemistry Faculty of Engineering. Himeji Institute of Technology
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NINESHIGE Atsushi
Department of Applied Chemistry, Faculty of Engineering, Himeji Institute of Technology
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Shimakawa Yuichi
Institute For Chemical Research Kyoto University
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SUEMASU Takashi
Institute of Applied Physics, University of Tsukuba
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HASEGAWA Fumio
Institute of Applied Physics, University of Tsukuba
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Sakai T
Dainippon Screen Manufacturing Co. Ltd. Kyoto Jpn
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OGUNI Taku
Tokyo Polytechnic University
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SEO Koichi
PANAlytical
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SAWADA Yutaka
Tokyo Polytechnic University
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YOSHIMOTO Mamoru
Department of Innovative and Engineered Materials, Tokyo Institute of Technology
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OKAMOTO Satoshi
Department of Innovative and Engineered Materials, Tokyo Institute of Technology
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KODA Seiichiro
Department of Chemistry, Faculty of Science and Technology, Sophia University
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SUMI Akihiro
Department of Innovative and Engineered Materials, Interdisciplinary Graduate School of Science and
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MAEDA Yoshihito
Department of Energy Science and Technology, Kyoto University
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SAITO Keisuke
Analytical Department PANalytical Division
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GIKAWA Takahiro
Department of Innovative and Engineered Materials, Tokyo Institute of Technology
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Sumi Akihiro
Department Of Innovative And Engineered Materials Interdisciplinary Graduate School Of Science And E
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Tada Masahiro
Advanced Materials Research Laboratory Mitsubishi Petrochemical Co. Ltd.
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Sugita Y
Department Of Pathology And Biodefense Saga Medical School
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TADA Masaru
Materials and Structures Laboratory, Tokyo Institute of Technology
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Takenaka Tadashi
Faculty Of Science And Technology Science University Of Tokyo
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Matsushige Kazumi
Department Of Applied Science Faculty Of Engineering Kyushu University
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Fujisawa Hironori
Department Of Neurosurgery The Ohtsu Citizen's Hospital
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Fujisawa Hironori
Department Of Mathematics Faculty Of Science Hiroshima University
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Fujisawa Hironori
Department Of Molecular Science And Technology Faculty Of Engineering Doshisha University
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Kanashima Takeshi
Department Of Electrical Engineering Faculty Of Engineering Science Osaka University
著作論文
- Direct Crystallization and Characterization of Bi_3TiTaO_9 Thin Films Prepared by Metalorganic Chemical Vapor Deposition
- MOCVD法により形成したPbTiO_3自己集合島の構造制御(新型不揮発性メモリー)
- 強誘電体ナノワイヤ及びナノアイランドの自発分極に関する研究 (平成21年度研究報告)
- ナノ強誘電体の基礎物性 : 現状と将来展望
- PbTiO_3- and Pb(Zr,Ti)O_3-Covered ZnO Nanorods
- MOCVD法によるPbTiO_3ナノ島作製とその強誘電性
- 24pYE-6 圧電応答顕微鏡でみる分域像(強誘電体分域の測定法の新展開と新しい分域像,シンポジウム,領域10,誘電体,格子欠陥,X線・粒子線,フォノン物性)
- MOCVD法によるナノサイズ強誘電体の作製とその物性
- 19aXC-4 HAADF STEM法を用いたSrTiO_3(100)/PbTiO_3強誘電体薄膜の原子構造組成解析(X線・粒子線(電子線),領域10,誘導体,格子欠陥,X線・粒子線,フォノン物性)
- MOCVD法による強誘電体ナノ構造の形成とその物性(新型不揮発性メモリ)
- 29pXH-2 自己組織化による強誘電体PbTiO_3ナノ構造の形成と構造制御(領域10シンポジウム : ナノスケール構造を利用した物質創製-材料種の枠を超えて)(領域10)
- 圧電応答顕微鏡による強誘電体薄膜の観察と評価
- 21pXC-7 圧電応答顕微鏡による強誘電体薄膜の分極反転過程の観察と評価
- MOCVD法によるPb(Zr,Ti)O_3薄膜の低温成長と特性の改善(圧電デバイス・材料,強誘電体材料,有機エレクトロニクス,一般)
- MOCVD法によるPb(Zr,Ti)O_3極薄膜のエピタキシャル成長と電気的特性(物性,成膜,加工,プロセス : 強誘電体薄膜とデバイス応用)
- MOCVD法によるPb(Zr,Ti)0_3薄膜の低温成長と特性の改善(圧電デバイス・材料,強誘電体材料,有機エレクトロニクス,一般)
- I層にMgOを用いたMIS及びMFIS構造の作製とその評価
- Impact of 90゚-Domain Wall Motion in Pb(Zr_Ti_)O_3 Film on the Ferroelectricity Induced by an Applied Electric Field
- Thick Epitaxial Pb(Zr_,Ti_)O_3 Films Grown on (100)CaF_2 Substrates with Polar-Axis-Orientation
- Multiferroism at Room Temperature in BiFeO_3/BiCrO_3(111) Artificial Superlattices
- Ferroelectric Property of a- /b-Axis- Oriented Epitaxial Sr_Bi_Ta_2O_9 Thin Films Grown by Metalorganic Chemical Vapor Deposition : Electrical Properties of Condensed Matter
- Structural Modulation in Oxygen Deficient Epitaxial Bi_2Sr_2Ca_1Cu_2O_X Observed by X-ray Reciprocal Space Mapping
- Epitaxial Yttria-stabilized Zirconia (YSZ) Film Deposited on Si(100) Substrate by YAG Laser
- Bi_2Sr_2Ca_1Cu_2O_X Thin Film Deposition by Q-switched YAG Laser
- Microstructure and Electrical Properties of (Pb, La)(Zr. Ti)O_3 Films Crystallized from Amorphous State by TWO-Step Postdeposition Annealing
- Effects of Pt/SrRuO_3 Top Electrodes on Ferroelectric Properties of Epitaxial(Pb, La)(Zr, Ti)O_3 Thin Films
- MOCVD法によるPb(Zr,Ti)0_3薄膜の低温成長と特性の改善(圧電デバイス・材料,強誘電体材料,有機エレクトロニクス,一般)
- MOCVD法によるPb(Zr,Ti)O_3薄膜の低温成長と特性の改善(圧電デバイス・材料,強誘電体材料,有機エレクトロニクス,一般)
- MOCVD法によるPb(Zr,Ti)O_3薄膜の低温成長と核付けが及ぼす効果
- Twin-Free Epitaxial Films Lateral Relation between YSZ(111) and Si(111)
- Strong Dependence on Thickness of Room-Temperature Dielectric Constant of (100)-Oriented Pb(Mg_Nb_)O_3 Epitaxial Films Grown by Metal Organic Chemical Vapor Deposition
- Metalorganic Chemical Vapor Deposition of Epitaxial Perovskite SrIrO_3 Films on (100)SrTiO_3 Substrates
- Epitaxial Growth of β-FeSi_2 on Single Crystal Insulator
- Crystal Structure Analysis of Metalorganic Chemical Vapor Deposition-β-FeSi_2 Thin Film by X-ray Diffraction Measurement
- Thermal Stability of SrRuO_3 Bottom Electrode and Electric Property of Pb(Zr, Ti)O_3 Thin Film Deposited on SrRuO_3
- Growth of Epitaxial β-FeSi_2 Thin Film on Si(001) by Metal-Organic Chemical Vapor Deposition
- Effect of Strain in Epitaxially Grown SrRuO_3 Thin Films on Crystal Structure and Electric Properties
- Cation Distribution and Structural Instability in Bi_La_xTi_3O_
- Raman Spectroscopic Fingerprint of Ferroelectric SrBi_2Ta_2O_9 Thin Films: A Rapid Distinction Method for Fluorite and Pyrochlore Phases : Electrical Properties of Condensed Matter
- Local Epitaxial Growth of (103) One-Axis-Oriented SrBi_2Ta_2O_9 Thin Films Prepared at Low Deposition Temperature by Metalorganic Chemical Vapor Deposition and Their Electrical Properties
- Interface and Domain Structures of (116)-Oriented SrBi_2Ta_2O_9 Thin Film Epitaxially Grown on (110) SrTiO_3 Single Crystal
- Interface and Defect Structures of (001)-Oriented SrBi_2Ta_2O_9 Thin Film Epitaxially Grown on (001) SrTiO_3 Single Crystal
- Observations of Island Structures at the Initial Growth Stage of PbZr_xTi_O_3 Thin Films Prepared by Metalorganic Chemical Vapor Deposition
- Low Temperature Direct Crystallization of SrBi_2(Ta_Nb_x)_2O_9 Thin Films by Thermal Metalorganic Chemical Vapor Deposition and Their Properties
- Pb(Zr, Ti)O_3薄膜を用いたMFIS構造における絶縁体膜の検討 : C-V 及び DLTS法による界面準位密度の測定
- Pb(Zr, Ti)O_3薄膜を用いたMFIS構造における絶縁体膜の検討 : C-V及びDLTS法による界面準位密度の測定
- MOCVD-Pb(Zr,Ti)O_3薄膜の電気的特性のグレインサイズ依存性
- MOCVD-Pb(Zr,Ti)O_3薄膜の電気的特性のグレインサイズ依存性
- Crystalline and Ferroelectric Properties of Pb(Zr, Ti)O_3 Thin Films Grown by Low-Temperature Metalorganic Chemical Vapor Deposition
- Epitaxial Growth and Ferroelectric Properties of the 20-nm-Thick Pb(Zr, Ti)O_3 Film on SrTiO_3(100) with an Atomically Flat Surface by Metalorganic Chemical Vapor Deposition
- Low-Temperature Fabrication of Ir/Pb(Zr,Ti)O_3/Ir Capacitors Solely by Metalorganic Chemical Vapor Deposition
- Influence of the Purity of Source Precursors on the Electrical Properties of Pb (Zr, Ti) O_3 Thin Films Prepared by Metalorganic Chemical Vapor Deposition
- Step Coverage Characteristics of Pb(Zr, Ti)O_3 Thin Films on Various Electrode Materials by Metalorganic Chemical Vapor Deposition
- Symptomatic Spinal Arachnoid Cyst Triggered by Seat Belt Injury : Case Report
- Role of Non-180° Domain Switching in Electrical Properties of Pb(Zr_, Ti)O_3 Thin Films
- Method of Distinguishing SrBi_2Ta_2O_9 Phase from Fluorite Phase Using X-Ray Diffraction Reciprocal Space Mapping
- Growth of β-FeSi_2 Thin Film on Si (111) by Metal-Organic Chemical Vapor Deposition : Surfaces, Interfaces, and Films
- Effect of Deposition Temperature and Composition on the Microstructure and Electrical Property of SrBi_2Ta_2O_9 Thin Films Prepared by Metalorganic Chemical Vapor Deposition
- Metalorganic Chemical Vapor Deposition of Epitaxial SrBi_2Ta_2O_9 Thin Films and Their Crystal Structure
- Preparation of SrBi_2Ta_2O_9 Thin Films by Metalorganic Chemical Vapor Deposition from Two New Liquid Organometallic Sources
- Property Improvement of 75nm-thick Directly crystallized SrBi_2Ta_2O_9 Thin Films by Pulse-introduced Metalorganic Chemical Vapor Deposition at Low Temperature : Electrical Properties of Condensed Matter
- Preparation of BiFeO3 Thin Films on SrRuO3/SrTiO3(001) Substrate by Dual Ion Beam Sputtering
- Preparation and Characterization of SrBi_2(Ta_Nb_x)_2O_9 Thin Films by Metalorganic Chemical Vapor Deposition from Two Organometallic Source Bottles
- Fabrication and Characterization of Nd-Substituted Bi4Ti3O12 Thin Films with $a$- and $b$-Axis Orientations by High-Temperature Sputtering
- Synthesis of 3-Ethoxyisoxazole Derivatives and 3-Ethoxy-1H-pyrazole Derivatives from β-Oxo Thionoesters
- Efficient tests for mean structure in random effects models
- Synthesis of Mica Thin Film by Pulsed Laser Deposition
- Dependence of Crystalline Structure and Lattice Parameters on Film Thickness in PbTiO_3/Pt/MgO Epitaxial Structure
- Chemical Stability of SrBi_2Ta_2O_9 Thin Films Prepared by Metalorganic Chemical Vapor Deposition(Special Issue on Nonvolatile Memories)
- Low-Temperature Preparation of SrBi_2Ta_2O_9 Thin Films by Electron Cyclotron Resonance Plasma-Enhanced Metalorganic Chemical Vapor Deposition and Their Electrical Properties
- Direct Preparation of Crystalline SrBi_2(Ta_Nb_x)_2O_9 Thin Films by Thermal Metalorganic Chemical Vapor Deposition at Low Temperature
- Size Effects of Epitaxial and Polycrystalline Pb(Zr, Ti)O_3 Thin Films Grown by Metalorganic Chemical Vapor Deposition
- Central Nervous System Primitive Neuroectodermal Tumor of Spinal Cord Developing 20 Years After Curative Treatment of Pineal Tumor : Case Report
- Fabrication of Ir-Based Electrodes by Metal Organic Chemical Vapor Deposition Using Liquid Ir Precursors
- Characterization of (Bi3.25Nd0.75)Ti3O12 Thin Films with $a$- and $b$-Axis Orientations Deposited on Nb:TiO2 Substrates by High-Temperature Sputtering
- Control of Orientation of Pb(Zr, Ti)O_3 Thin Films Using PbTiO_3 Buffer Layer ( FERROELECTRIC MATERIALS AND THEIR APPLICATIONS)
- Effects of O_3 on Growth and Electrical Properties of Pb(Zr, Ti)O_3 Thin Films by Photoenhanced Metalorganic Chemical Vapor Deposition ( FERROELECTRIC MATERIALS AND THEIR APPLICATIONS)
- Structural and Ferroelectric Properties of Domain-Structure-Controlled BiFeO3 Thin Films Prepared by Dual-Ion-Beam Sputtering
- Spindle Cell Oncocytoma of the Adenohypophysis With Marked Hypervascularity : Case Report
- Piezoresponse Force Microscopy Observations of Switching Behavior in Pb(Zr,Ti)O3 Capacitors
- Synthesis of PbTiO3 Nanotubes by Metalorganic Chemical Vapor Deposition
- Piezo- and Ferroelectric Properties of Self-Assembled PbTiO3 Nanoisland Structures Fabricated by Metalorganic Chemical Vapor Deposition
- Growth of Perovskite (Bi, Ln)(Ni0.5Ti0.5)O3 Thin Films by RF Magnetron Sputtering
- Self-Assembled PbTiO3 Nano-Islands Prepared on SrTiO3 by Metalorganic Chemical Vapor Deposition
- Fabrication of Self-Assembled Au Nanodots and Their Applications to Ferroelectric Nanocapacitors
- Microstructures of Self-Assembled PbTiO3 Nanoislands Prepared by Metalorganic Chemical Vapor Deposition
- Epitaxial Growth and Ferroelectric Properties of PbTiO3 Nanoislands and Thin Films Grown on Single-Crystalline Pt Films