Rchr
J-GLOBAL ID:200901008900634381
Update date: Sep. 25, 2024
Kamata Norihiko
カマタ ノリヒコ | Kamata Norihiko
Homepage URL (1):
http://www.fms.saitama-u.ac.jp/lab/kamata_l/
Research field (1):
Electric/electronic material engineering
Research theme for competitive and other funds (13):
- 2018 - 2021 Characterization of defect levels in UV-LEDs by below-gap excitation light under operating condition
- 2016 - 2021 Research on novel light emitting devices using the unique properties generated by singularity of crystal
- 2015 - 2020 Research on unexplored frequency quantum-cascade lasers using nitride semiconductors
- 2013 - 2016 Luminescence Microscope for Detecting Energy Distribution of Non-Radiative Recombination Centers
- 2012 - 2015 Comprehensive multi-level spectroscopy of below-gap states without electrode
- 2009 - 2011 Characterization of Defect Levels with Energy and Spatial Distribution by Deep Level Microscope
- 2005 - 2007 Spatial and Temporal Characterization of Nonradiative recombination centers by Using the Method of Two-Wavelength Excited Photoluminescence
- 2005 - 2006 2段階ゾルゲル法による広波長帯域の光導電性複合薄膜
- 2002 - 2004 Development of electroluminescence device containing water soluble polysilane and organic dyes in sol-gel glass
- 1998 - 1999 Spectroscopy of Non-Radiative Recombination Centers in Semiconductors for Light Emitting Devices
- 1989 - 1989 選択ドープGaAs/AlGaAs量子井戸薄膜の励起分光評価に関する研究
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Papers (155):
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Sanjida Ferdous, Hiroki Iwai, Norihiko Kamata, Hiroyuki Yaguchi, Shuhei Yagi. Detection of Nonradiative Recombination Centers in GaPN by Combining Two-Wavelength Excited Photoluminescence and Time-Resolved Photoluminescence. PHYSICA STATUS SOLIDI B-BASIC SOLID STATE PHYSICS. 2021. 258. 11
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M. Ajmal Khan, Takuma Matsumoto, Noritoshi Maeda, Norihiko Kamata, Hideki Hirayama. Erratum: Improved external quantum efficiency of 293 nm AlGaN UVB LED grown on an AlN template (Japanese Journal of Applied Physics (2019) 58 (SAAF01) DOI: 10.7567/1347-4065/aaea6a). Japanese Journal of Applied Physics. 2021. 60. 6
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Norihiko Kamata. Spectroscopy of Nonradiative Recombination Levels by Two-Wavelength Excited Photoluminescence. PHYSICA STATUS SOLIDI B-BASIC SOLID STATE PHYSICS. 2021. 258. 2
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Naoyuki Nomoto, Takashi Fujihara, Norihiko Kamata, Yuya Sawada, Takanori Kida, Masayuki Hagiwara, Zentaro Honda. Large magnetic anisotropy in a quasi-1D ferromagnetic complex Co(sba)(H2O)2·H2O (sba = 4-sulfobenzoate). Journal of Solid State Chemistry. 2020. 290. 121527-121527
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M. Ismail Hossain, Yuri Itokazu, Shunsuke Kuwaba, Norihiko Kamata, Hideki Hirayama. Temperature dependence of nonradiative recombination processes in UV-B AlGaN quantum well revealed by below-gap excitation light. OPTICAL MATERIALS. 2020. 105
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MISC (148):
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市村奏絵, 藤原隆司, 木田孝則, 萩原政幸, 鎌田憲彦, 本多善太郎. Magnetic properties of layered copper and cobalt cinnamate complexes. 日本磁気学会学術講演概要集. 2020. 44th
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井上大樹, 萩原政幸, 木田孝則, 鎌田憲彦, 本多善太郎. Magnetism of phthalocyanine based metal organic frameworks. 応用物理学会秋季学術講演会講演予稿集(CD-ROM). 2020. 81st
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古屋輝人, 萩原政幸, 木田孝則, 鎌田憲彦, 本多善太郎. Synthesis and magnetic properties of phthalocyanine-metal composites. 応用物理学会秋季学術講演会講演予稿集(CD-ROM). 2020. 81st
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Haque, Md Dulal, Kamata, Norihiko, Islam, A. Z. M. Touhidul, Honda, Zentaro, Yagi, Shuhei, Yaguchi, Hiroyuki. Photoluminescence characterization of nonradiative recombination centers in MOVPE grown GaAs:N delta-doped superlattice structure. OPTICAL MATERIALS. 2019. 89. 521-527
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藤田恵理子, 萩原政幸, 木田孝則, 澤田祐也, 鎌田憲彦, 本多善太郎. リチウムを挿入した多孔質鉄化合物の磁性. 応用物理学会春季学術講演会講演予稿集(CD-ROM). 2019. 66th. ROMBUNNO.10a-S423-7
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Books (1):
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多田、神谷監訳、鎌田共訳 光エレクトロニクス(基礎編)
丸善 2000
Lectures and oral presentations (68):
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水熱合成ZnOナノロッドにおける発光特性の評価
(第66回応用物理学会春季学術講演会 2019)
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温度消光を除去したBGE光によるSiAION蛍光体の非発光再結合準位測定
(第66回応用物理学会春季学術講演会 2019)
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リチウムを挿入した多孔質鉄化合物の磁性
(第66回応用物理学会春季学術講演会 2019)
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コバルトフタロシアニンシートの合成と構造
(第66回応用物理学会春季学術講演会 2019)
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半極性AIN/サファイアの結晶成長とUVC-LED実現へのアプローチ
(独立行政法人日本学術振興会 ワイドギャップ半導体光・電子デバイス第162委員会, 第110回研究会・特別公開シンポジウム「紫外発光デバイスの最前線と将来展望」 2018)
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