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J-GLOBAL ID:201801020206121970   Update date: May. 08, 2024

Takayanagi Shinji

タカヤナギ シンジ | Takayanagi Shinji
Affiliation and department:
Research field  (3): Measurement engineering ,  Applied physics - general ,  Thin-film surfaces and interfaces
Research keywords  (3): 圧電デバイス ,  結晶配向制御 ,  機能性薄膜
Research theme for competitive and other funds  (13):
  • 2021 - 2023 横波周回パイプセンサを用いた高感度液体計測システムの開発
  • 2019 - 2022 GHz帯横波斜入射の複素反射率測定による抗原抗体反応の高感度粘弾性計測
  • 2019 - 2020 スパッタ成膜における負イオン照射に基づいた高圧電性ScAlN薄膜の形成技術開発
  • 2018 - 2020 多重周回横波を利用したパイプセンサによる高感度液体計測
  • 2016 - 2019 横波超音波の固有振動数変動による抗原抗体反応の高感度質量計測
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Papers (72):
  • Naoki Tomiyama, Taiki Sato, Shinji Takayanagi, Takahiko Yanagitani. Improvement of Shear-Mode Electromechanical Coupling of c-Axis Parallel Oriented ZnO Film by Limiting Particle Irradiation Direction During RF Magnetron Sputtering. 2023 IEEE International Ultrasonics Symposium (IUS). 2023
  • Takumi Tominaga, Shinji Takayanagi, Takahiko Yanagitani. Theoretical investigation of Rayleigh surface acoustic wave propagation characteristics in c-axis-zigzag ScAlN film/silicon substrate structure. J. Appl. Phys. 2023. 133. 204502-1-204502-10
  • Takumi Tominaga, Shinji Takayanagi, Takahiko Yanagitani. c-Axis-tilted ScAlN films grown on silicon substrates for surface acoustic wave devices. Japanese Journal of Applied Physics. 2022. 61. SG
  • Hayato Ichihashi, Shoya Ueno, Takumi Fukunaga, Shinji Takayanagi, Mami Matsukawa. Signal Amplification of the Transient Response Measured by the Subnanosecond Pump-Probe Method Based on Surface Plasmon Resonance. IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control. 2022. 69. 6. 2152-2161
  • Takumi Tominaga, Shinji Takayanagi, Takahiko Yanagitani. Negative-ion bombardment increases during low-pressure sputtering deposition and their effects on the crystallinities and piezoelectric properties of scandium aluminum nitride films. Journal of Physics D: Applied Physics. 2022. 55. 10
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MISC (25):
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Patents (1):
  • 薄膜製造法および装置
Lectures and oral presentations  (129):
  • SAW デバイスへの応用に向けて Si 基板上に成長させた c 軸傾斜配向 ScAlN 薄膜
    (第42回超音波エレクトロニクスの基礎と応用に関するシンポジウム 2021)
  • MRI を用いた膵臓ファントムの作成とそのマルチモダリティイメージング
    (日本超音波医学会 第 48 回関西地方会学術集会 2021)
  • 超音波照射単一メダカ胚のプロテオーム解析 -SWATH 法による変動タンパク質特定の試み -
    (日本超音波医学会 第 48 回関西地方会学術集会 2021)
  • ジグザク配向 ScAlN 薄膜/Si 基板構造におけるレイリー波の伝搬特性解析
    (第50回EMシンポジウム 2021)
  • SAWデバイスに向けたc軸傾斜配向ScAlN薄膜/Si基板構造の作製
    (第82回応用物理学会秋期学術講演会 2021)
more...
Education (3):
  • 2011 - 2014 Doshisha University Graduate School, Division of Engineering Department of Electrical and Electronic Engineering
  • 2009 - 2011 Doshisha University Graduate School, Division of Engineering Department of Electrical and Electronic Engineering
  • 2005 - 2009 Doshisha University Faculty of Engineering Depertment of Electronics
Professional career (3):
  • 学士(工学) (同志社大学)
  • 修士(工学) (同志社大学)
  • 博士(工学) (同志社大学)
Work history (5):
  • 2024/04 - 現在 Doshisha University Faculty of Life and Medical Sciences Department of Biomedical Information
  • 2019/04 - 2024/03 Doshisha University Faculty of Life and Medical Sciences, Department of Biomedical Information
  • 2016/04 - 2019/03 Nagoya Institute of Technology Graduate School of Engineering Omohi College Assistant Professor
  • 2014/04/01 - 2016/03/31 Doshisha University Office for Research Initiatives and Development
  • 2012/04/01 - 2014/03/31 Doshisha University
Committee career (2):
  • 2018 - 現在 圧電材料・デバイスシンポジウム 運営委員
  • 2014/04 - 2017/03 日本音響学会 関西支部 若手の会実行委員
Association Membership(s) (5):
The Japan Society of Vacuum and Surface Science ,  THE JAPAN SOCIETY OF ULTRASONICS IN MEDICINE ,  ACOUSTICAL SOCIETY OF JAPAN ,  IEEE ,  THE JAPAN SOCIETY OF APPLIED PHYSICS
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