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J-GLOBAL ID:200901037602526746   Update date: Feb. 17, 2024

Sugawara Hirotake

スガワラ ヒロタケ | Sugawara Hirotake
Affiliation and department:
Job title: Associate Professor
Homepage URL  (2): http://researchers.general.hokudai.ac.jp/profile/ja.VBR3znItApp9SpgEbq6Hqg==.htmlhttp://mars-ei.eng.hokudai.ac.jp/~sgwr/
Research field  (2): Basic plasma science ,  Electric/electronic material engineering
Research keywords  (8): electron swarm ,  Boltzmann equation ,  magnetized plasma ,  electron transport ,  Monte Carlo simulation ,  プラズマエレクトロニクス ,  Electric Discharges ,  Plasma Electronics
Research theme for competitive and other funds  (22):
  • 2019 - 2022 誘導結合磁化プラズマ中の電磁界配位由来非対称指向性電子輸送と部分共鳴の計算機解析
  • 2016 - 2019 磁界分界面がプラズマ中電子に及ぼすエネルギー選択的シャッタ・フィルタ効果の解析
  • 2010 - 2015 Spin-polarized Lasing in Quantum Dots
  • 2012 - 2015 対向発散磁界を印加した誘導結合型プロセスプラズマ中の反応性粒子流の計算機解析
  • 2010 - 2013 低気圧高密度磁気中性線環状放電プロセスプラズマのモデリングと動的制御特性解析
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Papers (78):
  • Luca Vialetto, Hirotake Sugawara, Savino Longo. Particle Propagation and Electron Transport in Gases. Plasma. 2024. 7. 1. 121-145
  • Tsukasa Kobayashi, Hirotake Sugawara, Kei Ikeda. An improved calculation scheme of electron flow in propagator method for solving the Boltzmann equation. Japanese Journal of Applied Physics. 2023. 62. SL. SL1020-1-SL1020-10
  • Ryota Okazaki, Hirotake Sugawara. Analysis of electron heating due to partial resonance in an inductively coupled plasma under confronting divergent magnetic fields. Japanese Journal of Applied Physics. 2023. 62. SL. SL1003-1-SL1003-8
  • Yui Okuyama, Yuka Yasuzawa, Hirotake Sugawara. Effects of a small amount of H2O on negative ion mobility and ion-molecule reactions in O2 at atmospheric pressure. Electrical Engineering in Japan. 2023. 216. 1
  • Yui Okuyama, Yuka Yasuzawa, Hirotake Sugawara. Effects of a Small Amount of H2O on Negative Ion Mobility and Ion-Molecule Reactions in O2 at Atmospheric Pressure. IEEJ Transactions on Fundamentals and Materials. 2022. 142. 10. 397-405
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MISC (64):
  • Hirotake Sugawara. Configuration of propagator method for calculation of electron velocity distribution function in gas under crossed electric and magnetic fields. The 19th Asian Conf. on Electrical Discharge. 2018. I-1
  • Hirotake Sugawara. Calculation of Real-Space Electron Transport Coefficients under Crossed Electric and Magnetic Fields by a Propagator Method. 10th Asia-Pacific Int. Symp. on the Basics and Applications of Plasma Technol. 2017. S3-01
  • Hirotake Sugawara. Fundamental study on filter effect of confronting divergent magnetic fields applied to a low-pressure inductively coupled plasma. 9th Int. Conf. Reactive Plasmas; 68th Ann. Gaseous Electronics Conf. (Am. Phys. Soc.); 33rd Symp. Plasma Processing. 2015. KW2.00001
  • Hirotake Sugawara. Electron behavior under characteristic magnetic fields applied to inductively coupled plasmas for control of charged particle transport. XVIII Int. Workshop on Low-Energy Positron and Positronium Physics (POS) & XIX Int. Symp. on Electron-Molecule Collisions and Swarms (EMS). 2015. 14-14
  • Hirotake Sugawara. Electron conduction under the rectification effect of antiparallel magnetic fields. XVI Int. Workshop on Low Energy Positron and Positronium Physics & XVII Int. Symp. Electron-Molecule Collisions and Swarms. 2011. 32
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Books (2):
  • 放電基礎パラメータと放電応用技術の最前線
    社団法人電気学会 2010
  • 窒素の放電プラズマが見せる多様性と最新応用
    社団法人電気学会 2006
Lectures and oral presentations  (15):
  • Configuration of propagator method for calculation of electron velocity distribution function in gas under crossed electric and magnetic fields
    (2018)
  • Monte Carlo analysis of the asymmetry in azimuthal electron flow in an inductively coupled plasma driven under confronting divergent magnetic fields
    (XXIV Europhysics Conf. on Atomic and Molecular Physics of Ionized Gases 2018)
  • Computational Study on Characteristic Mechanisms of Energy Deposition to Electrons in a Low-Pressure Inductively Coupled Magnetized Plasma
    (20th Gaseous Electronics Meeting 2018)
  • Calculation of Real-Space Electron Transport Coefficients under Crossed Electric and Magnetic Fields by a Propagator Method
    (2017)
  • Calculation of electron velocity distribution function under crossed electric and magnetic fields using a propagator method
    (XXXIII Int. Conf. Phenomena in Ionized Gases 2017)
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Education (4):
  • - 1992 Hokkaido University
  • - 1992 Hokkaido University Graduate School, Division of Engineering Division of Electrical Engineering
  • - 1990 Hokkaido University School of Engineering
  • - 1990 Hokkaido University Faculty of Engineering Department of Electrical Engineering
Professional career (2):
  • Doctor of Engineering (Electrical Engineering), Hokkaido University (Hokkaido University)
  • Master of Engineering (Electrical Engineering), Hokkaido University (Hokkaido University)
Work history (12):
  • 2004 - 2007 Hokkaido University Graduate School of Information Science and Technology, Division of Electronics for Informatics
  • 2004 - 2007 Associate Professor
  • 2007 - - 北海道大学大学院情報科学研究科情報エレクトロニクス専攻集積システム講座集積プロセス学研究室 准教授
  • 2007 - - Associate Professor
  • 1998 - 2004 北海道大学大学院工学研究科電子情報工学専攻集積材料デバイス工学講座集積電子材料工学分野 助教授
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Committee career (21):
  • 2018/05 - 現在 電気学会 編修専門第1部会委員
  • 2018/01 - 現在 電気学会 プラズマ・パルスパワー技術委員会1号委員
  • 2012/04 - 2017/12 社団法人電気学会 プラズマ技術委員会1号委員
  • 2014/10 - 2017/09 電気学会 放電技術委員会2号委員
  • 2014/10 - 2017/09 電気学会 放電・プラズマ気相シミュレーション技法調査専門委員会委員長
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Awards (6):
  • 2016/07 - 日本学術振興会 平成27年度特別研究員等審査会専門委員(書面担当)表彰
  • 2000 - 電気学会 電気学会優秀論文発表賞
  • 1997 - 電気学会 電気学会優秀論文発表賞
  • 1995/03 - 電気学会 電気学会論文発表賞(賞B)
  • 1992/04 - 電気学会論文発表賞(賞A)
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Association Membership(s) (4):
THE JAPAN SOCIETY OF APPLIED PHYSICS ,  日本工学教育協会 ,  社団法人電気学会 ,  The Institute of Electrical Engineers of Japan
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