UEMATSU Takuya | Optical Information Media Laboratory, Yokohama Research Center, Mitsubishi Chemical Corporation
スポンサーリンク
概要
- 同名の論文著者
- Optical Information Media Laboratory, Yokohama Research Center, Mitsubishi Chemical Corporationの論文著者
関連著者
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Balasubramanian Kunjithapatham
Calimetrics Inc.
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Zhou Ting
Calimetrics Inc.
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KIYONO Kenjirou
Optical Information Media Laboratory, Yokohama Research Center, Mitsubishi Chemical Corporation
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HORIE Michikazu
Optical Information Media Laboratory, Yokohama Research Center, Mitsubishi Chemical Corporation
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OHNO Takashi
Optical Information Media Laboratory, Yokohama Research Center, Mitsubishi Chemical Corporation
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UEMATSU Takuya
Optical Information Media Laboratory, Yokohama Research Center, Mitsubishi Chemical Corporation
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HASHIZUME Takao
Optical Information Media Laboratory, Yokohama Research Center, Mitsubishi Chemical Corporation
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NARAYAN Raghuram
Calimetrics Inc.
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WARLAND David
Calimetrics Inc.
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Balasubramanian K
Calimetrics Inc. Ca Usa
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Kiyono K
Mitsubishi Kagaku Media Co. Ltd. Ibaraki Jpn
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Narayan Raghuram
Calimetrics Inc., 815 Atlantic Avenue, Suite 105, Alameda, CA 94501-2274, USA
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Neill Michael
Calimetrics Inc., 815 Atlantic Avenue, Suite 105, Alameda, CA 94501-2274, USA
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Balasubramanian Kunjithapatham
Calimetrics Inc., 815 Atlantic Avenue, Suite 105, Alameda, CA 94501-2274, USA
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Warland David
Calimetrics Inc., 815 Atlantic Avenue, Suite 105, Alameda, CA 94501-2274, USA
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Hashizume Takao
Optical Information Media Laboratory, Yokohama Research Center, Mitsubishi Chemical Corporation, 1000 Kamoshida-cho, Aoba-ku, Yokohama 227-8502, Japan
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Horie Michikazu
Optical Information Media Laboratory, Yokohama Research Center, Mitsubishi Chemical Corporation, 1000 Kamoshida-cho, Aoba-ku, Yokohama 227-8502, Japan
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Uematsu Takuya
Optical Information Media Laboratory, Yokohama Research Center, Mitsubishi Chemical Corporation, 1000 Kamoshida-cho, Aoba-ku, Yokohama 227-8502, Japan
著作論文
- Rewritable Multilevel Recording by Mark-Size Modulation on Growth-Dominant Phase-Change Material
- Rewritable Multilevel Recording by Mark-Size Modulation on Growth-Dominant Phase-Change Material