Rchr
J-GLOBAL ID:200901064478824668   Update date: Dec. 10, 2024

Katsumi Kishino

Katsumi Kishino
Research field  (3): Electronic devices and equipment ,  Electric/electronic material engineering ,  Crystal engineering
Research keywords  (11): Three primary colors integrated LEDs ,  Nnocolumn LEDs ,  GaN nanocolumns ,  Nitride Semicondcutors ,  Molecular Beam Epitaxy ,  Nanostructures ,  Nanolasers ,  InGaN/GaN multiple quantum wells ,  Green light semicondcutor lasers ,  Photonic crystal effect ,  II-VI Compound Semicondcutors
Research theme for competitive and other funds  (43):
  • 2019 - 2022 Innovation of Three Primary Colors Emitting Devices by Nanocolumn Crystals
  • 2016 - 2018 GaNナノコラムによる次世代三原色映像デバイス技術の創出
  • 2012 - 2016 Research on ultrafine GaN nanowall light-emitting devices having InGaN quantum active layer
  • 2012 - 2016 Innovation of energy and environment-friendly devices by nanocrystal effect
  • 2012 - 2013 Feasibility study of InN/InGaN nanocolumn solar cells
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Papers (304):
  • Kota Hoshino, Rie Togashi, Katsumi Kishino. Red Emission of Well-Ordered InGaN/GaN Nanocolumn Arrays on Si (111) Substrates Grown via Nanotemplate Selective-Area Growth. physica status solidi (b). 2024
  • Hiroyuki Shimada, Hironobu Kariyazono, Yohei Nakagawa, Shinji Terao, Kentaro Takayanagi, Koichiro Akasaka, Shunsuke Ishizawa, Koichi Morozumi, Tsutomu Asakawa, Rie Togashi, et al. Bottom-up vertical GaN nanocolumn Schottky barrier diodes with extremely high packing density grown by molecular beam epitaxy. Japanese Journal of Applied Physics. 2024. 63. 2. 02SP67-02SP67
  • Katsumi Kishino, Ai Mizuno, Tatsuya Honda, Jumpei Yamada, Rie Togashi. Improving the luminous efficiency of red nanocolumn μ-LEDs by reducing electrode size to φ2.2 μm. Applied Physics Express. 2023. 17. 1. 014004-014004
  • Takao Oto, Aoto Aihara, Kai Motoyama, Shunsuke Ishizawa, Koichi Okamoto, Rie Togashi, Katsumi Kishino. Plasmonic red-light-emission enhancement by honeycomb-latticed InGaN/GaN ordered fine nanocolumn arrays. Applied Physics Express. 2023. 16. 115001
  • Jumpei Yamada, Ai Mizuno, Tatsuya Honda, Keigo Yoshida, Rie Togashi, Ichirou Nomura, Tomohiro Yamaguchi, Tohru Honda, Katsumi Kishino. InGaN/GaN superlattice underlayer for fabricating of red nanocolumn μ-LEDs with (10-11) plane InGaN/AlGaN MQWs. Nanotechnology. 2023. 34. 43. 435201-435201
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MISC (109):
  • 岸野 克巳, 富樫 理恵, 大音 隆男. マイクロLED(μLED)ディスプレイに向けたInGaN/GaNナノコラムの進展-Advances in InGaN/GaN Nanocolumns for Micro-LED Displays-特集 次世代ディスプレイ実現に向けた窒化物半導体結晶成長技術の進展. 日本結晶成長学会誌 Journal of the Japanese Association for Crystal Growth. 2024. 51. 2. 1-14
  • 大音 隆男, 本山 界, 松井 祐三, 石沢 峻介, 岸野 克巳. Science As Art 愛のナノ結晶. 応用物理. 2017. 86. 10. 853-853
  • 岸野克巳. ナノコラムLED. 2016年度光技術動向調査報告書. 2017
  • Optical properties of InGaN nanoplates grown by molecular beam epitaxy. 2015. 115. 65. 17-19
  • 岸野克巳. 窒化物半導体ナノコラム結晶による可視光域発光デバイスの革新. 科研費NEWS 2014年度. 2015. 4. 11
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Patents (111):
  • Group-III nitride structure including a fine wall-shaped structure containing a group-III nitride emiconductor crystal and method for producing a group-III nitride structure including a fine wall-shaped structure containing a group-III nitride semiconductor crystal
  • Light emitting element and its manufacturing method
  • Columnar crystal containing light emitting element and method of manufactureing the same
  • Columnar crystal containing light emitting element and method of manufactureing the same
  • III nitride structure and method for manufacturing III nitride semiconductor fine columnar crystal
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Books (25):
  • マイクロLEDディスプレイ ー市場と要素技術の開発動向ー
    サイエンス&テクノロジー株式会社 2021
  • Molecular beam epitaxy : materials and applications for electronics and optoelectronics
    Wiley 2019 ISBN:9781119355014
  • 『光技術動向調査報告書 2017年3月』「ナノコラムLED」
    一般財団法人光産業技術振興協会 2017
  • Molecular Beam Epitaxial Growth of GaN Nanocolumns and Related Nanocolumn Emitters
    Pan Stanford Publishing Pte. Ltd. 2017
  • 窒化物半導体ナノコラム結晶による可視光域発光デバイスの革新
    2015
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Lectures and oral presentations  (1,187):
  • ナノコラムのクラスタ配列化による発光強度増大と偏光制御
    (応用物理学会東北支部第76回学術講演会 2021)
  • InGaN系ナノコラムの形状制御とその発光特性
    (第2回半導体ナノフォトニクス研究会 2021)
  • InGaN/GaN規則配列ナノコラムにおける 発光色制御メカニズムの解析
    (第2回半導体ナノフォトニクス研究会 2021)
  • InGaNナノコラムプラズモニック結晶の構造設計と赤色発光の高効率化
    (第2回半導体ナノフォトニクス研究会 2021)
  • InGaN/GaN系ナノコラム発光デバイス
    (一般社団法人ワイドギャップ半導体学会設立記念シンポジウム 2021)
more...
Education (3):
  • 1975 - 1980 Tokyo Institute of Technology Graduate School of Science and Engineering Doctoral Course of Electronics Engineering
  • 1973 - 1975 Tokyo Institute of Technology School of Engineering Physical Electronics
  • 1968 - 1973 National Institute of Technology, Tokyo College Department of Electrical Engineering
Professional career (2):
  • 工学修士 (東京工業大学)
  • 工学博士 (東京工業大学)
Work history (9):
  • 2023/04 - 現在 Sophia University Faculty of Science and Technology Visiting Professor
  • 2018/04 - 2023/03 Sophia University Professor by Special Appointment
  • 2008/04 - 2023/03 Sophia University Nanotechnology Research Center Director of the center
  • 1992/04 - 2018/03 Sophia University Faculty of Science and Technology Professor
  • 1989/09 - 1990/08 University of Illinois at Urbana-Champaign Visiting Associate Professor
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Committee career (25):
  • 2022/10 - 2024/09 日本学術振興会 協力会 理事長
  • 2023/11 - !4th International Conference on Nitride Semicondcutors Organizing Comittee Honorary Co-Charis
  • 2023/03 - 第70回 応用物理学会 春季学術講演会 現地実行委員長
  • 2002 - 2022/10 2nd-11st International Workshop on Nitride Semicondcutors International Advisary Committee Member
  • 2018/05 - 2021/09 日本学術振興会 協力会 評議員
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Awards (8):
  • 2022/07 - 応用物理学会 功労会員
  • 2021/10 - Microoptics Group, The Japan Society of Applied Physics MOC Award The Award honors outstanding technical contributions to the fundamentals and/or applications of microoptics.
  • 2021 - IEEE Life Fellow
  • 2016/09/27 - International conference on Solid State Devices abd Materials: SSDM SSDM Award 2016
  • 2016 - IEEE: Institute of Electrical and Electronics Engineers, Inc. IEEE Fellow
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Association Membership(s) (3):
電子情報通信学会 ,  応用物理学会 ,  米国IEEE
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