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Development of topological spin-device utilizing quasi-peridoc strucuture

Research Project

Project/Area Number 16K04881
Research Category

Grant-in-Aid for Scientific Research (C)

Allocation TypeMulti-year Fund
Section一般
Research Field Nanostructural physics
Research InstitutionFukuoka University

Principal Investigator

Nakayama Kazuyuki  福岡大学, 理学部, 助教 (80602721)

Co-Investigator(Kenkyū-buntansha) 冨田 知志  東北大学, 理学研究科, 助教 (90360594)
Research Collaborator Manago Takashi  
Project Period (FY) 2016-04-01 – 2019-03-31
Project Status Completed (Fiscal Year 2018)
Budget Amount *help
¥4,810,000 (Direct Cost: ¥3,700,000、Indirect Cost: ¥1,110,000)
Fiscal Year 2018: ¥910,000 (Direct Cost: ¥700,000、Indirect Cost: ¥210,000)
Fiscal Year 2017: ¥1,950,000 (Direct Cost: ¥1,500,000、Indirect Cost: ¥450,000)
Fiscal Year 2016: ¥1,950,000 (Direct Cost: ¥1,500,000、Indirect Cost: ¥450,000)
Keywordsメタマテリアル / スピン波 / 準周期 / トポロジー / スピントロニクス / スピンデバイス / 量子エレクトロニクス
Outline of Final Research Achievements

We studied the propagation characteristics of spin waves using a magnonic crystal with a quasi-periodic structure. Using permalloy or nickel as a material, the LLG equation was numerically solved for the stripe and grating structure. Band structures and eigenmodes were analyzed. We found an interesting structure in which localized states appear at the interface of quasi-periodic magnonic crystals connected with different quasi-periodic sequences.
In order to evaluate the characteristics of spin waves, it is necessary to study measurement using the S-parameter method with a coplanar waveguide antenna. Therefore, we conducted experimental and numerical studies on the characteristics of the antenna structures used in spin wave detection. As a consequence, an interesting result was obtained that the nonreciprocity of spin waves can be controlled by the antenna width.

Academic Significance and Societal Importance of the Research Achievements

近年、スピン流を利用した情報処理機能デバイスの開発や超省電力情報伝送技術の開発が活発である。特にマグノンを利用したスピン波スピン流は、電子の流れを伴わず発熱を抑えることができるため、超省エネ技術の基盤研究として注目を集めている。本研究によって強磁性膜の質や人工構造体の作製精度に対する制約の少ない、スピン波デバイスの実現に向けた基盤技術を提供し、スピントロニクス、マグノニクスなど、スピン波を利用する幅広い研究分野への波及効果を与えることが期待される。

Report

(4 results)
  • 2018 Annual Research Report   Final Research Report ( PDF )
  • 2017 Research-status Report
  • 2016 Research-status Report
  • Research Products

    (11 results)

All 2018 2017

All Journal Article (3 results) (of which Peer Reviewed: 3 results,  Open Access: 1 results) Presentation (7 results) (of which Int'l Joint Research: 1 results) Book (1 results)

  • [Journal Article] Dependence of non-reciprocity in spin wave excitation on antenna configuration2018

    • Author(s)
      Shibata Koji、Kasahara Kenji、Nakayama Kazuyuki、Kruglyak Volodymyr V.、Aziz Mustafa M.、Manago Takashi
    • Journal Title

      Journal of Applied Physics

      Volume: 124 Issue: 24 Pages: 243901-243901

    • DOI

      10.1063/1.5068722

    • Related Report
      2018 Annual Research Report
    • Peer Reviewed
  • [Journal Article] Microwave Spectroscopy of a Single Permalloy Chiral Metamolecule on a Coplanar Waveguide2018

    • Author(s)
      Kodama Toshiyuki、Kusanagi Yusaku、Okamoto Satoshi、Kikuchi Nobuaki、Kitakami Osamu、Tomita Satoshi、Hosoito Nobuyoshi、Yanagi Hisao
    • Journal Title

      Physical Review Applied

      Volume: 9 Issue: 5

    • DOI

      10.1103/physrevapplied.9.054025

    • NAID

      120006478565

    • Related Report
      2018 Annual Research Report
    • Peer Reviewed
  • [Journal Article] Magnetic Properties of Fibonacci-Modulated Fe-Au Multilayer Metamaterials2017

    • Author(s)
      Tomomi Suwa, Satoshi Tomita*, Nobuyoshi Hosoito and Hisao Yanagi
    • Journal Title

      Materials

      Volume: 10 Issue: 10 Pages: 1209-1209

    • DOI

      10.3390/ma10101209

    • NAID

      120006537384

    • Related Report
      2017 Research-status Report
    • Peer Reviewed / Open Access
  • [Presentation] Spin-wave Localization with Quasi-periodic Magnonic Metamaterials2018

    • Author(s)
      K. Nakayama, S. Tomita, R. Kawasaki, K. Kasahara, N. Hosoito, H. Yanagi, and T. Manago
    • Organizer
      Metamaterials'2018 (Espoo, Finland)
    • Related Report
      2018 Annual Research Report
    • Int'l Joint Research
  • [Presentation] 準周期接合界面におけるマグノン状態の研究2018

    • Author(s)
      中山和之, 冨田知志, 川崎連, 笠原健司, 細糸信好, 柳久雄, 眞砂 卓史
    • Organizer
      第79回応用物理学会秋季学術講演会
    • Related Report
      2018 Annual Research Report
  • [Presentation] コプレーナ線路を用いたPy/Ag/Bi三層膜の強磁性共鳴2018

    • Author(s)
      川崎連、妹尾駿一、岡本聡、菊池伸明、北上修、冨田知志、細糸信好、柳久雄
    • Organizer
      第66回応用物理学会春季学術講演会
    • Related Report
      2018 Annual Research Report
  • [Presentation] 準周期グレーティングによる静磁表面波の局在化2018

    • Author(s)
      中山 和之、冨田 知志、川崎 連、笠原 健司、細糸 信好、柳 久雄、眞砂 卓史
    • Organizer
      日本物理学会 第73回年次大会
    • Related Report
      2017 Research-status Report
  • [Presentation] 磁性体準周期グレーティング構造の作製とスピン波測定2018

    • Author(s)
      川崎 連、中山 和之、冨田 知志、笠原 健司、眞砂 卓史、細糸 信好、柳 久雄
    • Organizer
      第65回応用物理学会春季学術講演会
    • Related Report
      2017 Research-status Report
  • [Presentation] フィボナッチ格子を持つマグノニック結晶のスピン波特性2017

    • Author(s)
      中山 和之、冨田 知志、笠原 健司、諏訪 智巳、細糸 信好、柳 久雄、眞砂 卓史
    • Organizer
      第78回応用物理学会秋季学術講演会
    • Related Report
      2017 Research-status Report
  • [Presentation] 準周期磁気構造体を利用したスピン波制御2017

    • Author(s)
      中山和之, 冨田知志, 笠原健司, 児玉俊之, 細糸信好, 柳久雄, 眞砂卓
    • Organizer
      日本物理学会 第72回年次大会
    • Place of Presentation
      大阪大学
    • Related Report
      2016 Research-status Report
  • [Book] 磁性材料・部品の最新開発事例と応用技術2018

    • Author(s)
      中山和之 (分担執筆)
    • Total Pages
      8
    • Publisher
      技術情報協会
    • ISBN
      9784861047053
    • Related Report
      2017 Research-status Report

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Published: 2016-04-21   Modified: 2020-03-30  

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