Rchr
J-GLOBAL ID:200901064478824668   Update date: Apr. 17, 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 (302):
  • 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
  • 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
  • Anri Sakurai, Kohei Iwamoto, Yoshihiko Miwa, Hirokazu Hori, Akira Ishikawa, Kazuharu Uchiyama, Kiyoshi Kobayashi, Katsumi Kishino, Masaru Sakai. Scanning near-field optical spectroscopy and carrier transport based analysis in mesoscopic regions for two-dimensional semiconductors. Scientific Reports. 2022. 12. 1
  • N. Shimosako, K. Kinjo, Y. Inose, T. Nakaoka, T. Oto, K. Kishino, K. Ema. Energy diagram and parameters regarding localized states in InGaN/GaN nanocolumns. Journal of Applied Physics. 2021. 130. 14. 143106-143106
  • Takao Oto, Masato Namazuta, Shotaro Hayakawa, Koichi Okamoto, Rie Togashi, Katsumi Kishino. Comparison of surface plasmon polariton characteristics of Ag- and Au-based InGaN/GaN nanocolumn plasmonic crystals. Applied Physics Express. 2021. 14. 10. 105002-105002
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MISC (108):
  • 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
  • Suzuki Sho, Kouno Tetsuya, Sakai Masaru, Kishino Katsumi, Hara Kazuhiko. Investigation of optical property of triangular GaN microdisk fabricated via top-down process. IEICE technical report. Electronic information displays. 2015. 114. 407. 103-105
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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  (1,194):
  • 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 (24):
  • 2022/10 - 現在 日本学術振興会 協力会 理事長
  • 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
  • 2016/04 - 2021/03 日本学術振興会 ワイドギャップ半導体光・電子デバイス第162委員会 委員長
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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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