研究者詳細

顔写真

ホシ コウジロウ
星 幸治郎
Koujiro Hoshi
所属
高等研究機構材料科学高等研究所 材料物理グループ
職名
特任助教(研究)
学位
  • 博士(理学)(東邦大学)

  • 修士(理学)(東邦大学)

経歴 2

  • 2026年1月 ~ 継続中
    東北大学材料科学高等研究所

  • 2021年4月 ~ 2025年12月
    東京大学 大学院工学系研究科 物理工学専攻 特任研究員

所属学協会 2

  • 応用物理学会

    2025年5月 ~

  • 日本物理学会

    2016年9月 ~

研究キーワード 1

  • スピントロニクス

研究分野 1

  • 自然科学一般 / 磁性、超伝導、強相関系 /

論文 12

  1. Single- and two-mode magnon thermal squeezing

    Tomosato Hioki, Kaito Tojo, Mehrdad Elyasi, Sohei Horibe, Hiroki Shimizu, Koujiro Hoshi, Takahiko Makiuchi, Gerrit E. W. Bauer, Eiji Saitoh

    Nature Physics 2026年6月1日

    出版者・発行元: Springer Science and Business Media LLC

    DOI: 10.1038/s41567-026-03294-4  

    ISSN:1745-2473

    eISSN:1745-2481

  2. High harmonic generation by dynamic Fermi surface nesting 査読有り

    Koujiro Hoshi, Terufumi Yamaguchi, Tomosato Hioki, Eiji Saitoh

    Physical Review B 113 (9) 2026年3月9日

    出版者・発行元: American Physical Society (APS)

    DOI: 10.1103/wjf4-1zyj  

    ISSN:2469-9950

    eISSN:2469-9969

  3. Electric voltage generation by standing spin waves in a ferromagnetic metal

    Koujiro Hoshi, Tomosato Hioki, Eiji Saitoh

    Physical Review Applied 21 (6) 2024年6月25日

    出版者・発行元: American Physical Society (APS)

    DOI: 10.1103/physrevapplied.21.064057  

    eISSN:2331-7019

  4. Topological spin Hall effect in antiferromagnets driven by vector Néel chirality 査読有り

    Kazuki Nakazawa, Koujiro Hoshi, Jotaro J. Nakane, Jun-ichiro Ohe, Hiroshi Kohno

    Physical Review B 109 (24) 2024年6月6日

    出版者・発行元: American Physical Society (APS)

    DOI: 10.1103/physrevb.109.l241105  

    ISSN:2469-9950

    eISSN:2469-9969

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    Spin Hall effect of spin-texture origin is explored theoretically for antiferromagnetic (AF) metals. It is found that a vector chirality formed by the Néel vector gives rise to a topological spin Hall effect. This is topological since it is proportional to the winding number counted by in-plane vector chirality along the sample edge, which can be nonvanishing for AF merons but not for AF skyrmions. The effect is enhanced when the Fermi level lies near the AF gap, and, surprisingly, at weak coupling with small AF gap. These features are confirmed numerically based on the Landauer-Büttiker formula. Important roles played by nonadiabatic processes and spin dephasing are pointed out.

  5. Persistent magnetic coherence in magnets

    Takahiko Makiuchi, T. Hioki, Hiroki Shimizu, K. Hoshi, Mehrdad Elyasi, Kei Yamamoto, Naoto Yokoi, Alexander A. Serga, Burkard Hillebrands, Gerrit Bauer, Eiji Saitoh

    Nature Materials 2024年2月6日

    出版者・発行元: Springer Science and Business Media LLC

    DOI: 10.1038/s41563-024-01798-z  

    ISSN:1476-4660

  6. Electrical detection of parallel parametric amplification and attenuation in a Y3Fe5O12/Pt bilayer disk

    Geil Emdi, Tomosato HIOKI, Koujiro Hoshi, Eiji Saitoh

    Physical Review B 108 (14) 2023年10月26日

    出版者・発行元: American Physical Society ({APS})

    DOI: 10.1103/physrevb.108.l140410  

    ISSN:2469-9950 2469-9969

  7. Switching of magnon parametric oscillation by magnetic field direction

    Sohei Horibe, Hiroki Shimizu, Koujiro Hoshi, Takahiko Makiuchi, Tomosato HIOKI, Eiji Saitoh

    Applied Physics Express 16 (7) 073001-073001 2023年7月1日

    出版者・発行元: {IOP} Publishing

    DOI: 10.35848/1882-0786/acdfb8  

    ISSN:1882-0778 1882-0786

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    <jats:title>Abstract</jats:title> <jats:p>Parametric oscillation occurs when the resonance frequency of an oscillator is periodically modulated. Owing to time-reversal symmetry breaking in magnets, nonreciprocal magnons can be parametrically excited when spatial-inversion symmetry breaking is provided. This means that magnons with opposite propagation directions have different amplitudes. Here we demonstrate switching on and off the magnon parametric oscillation by reversing the external field direction applied to a Y<jats:sub>3</jats:sub>Fe<jats:sub>5</jats:sub>O<jats:sub>12</jats:sub> micro-structured film. The result originates from the nonreciprocity of surface mode magnons, leading to field-direction dependence of the magnon accumulation under nonuniform microwave pumping. Our numerical calculation well reproduces the experimental result.</jats:p>

  8. Spin motive force induced by parametric excitation

    Koujiro Hoshi, Tomosato HIOKI, Eiji Saitoh

    Applied Physics Letters 121 (21) 212404-212404 2022年11月21日

    出版者・発行元: {AIP} Publishing

    DOI: 10.1063/5.0129466  

    ISSN:0003-6951 1077-3118

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    <jats:p> Spin motive force generated by parametrically excited magnetization dynamics is numerically investigated. We calculate spin motive force in a permalloy disk under an ac magnetic field with twice the ferromagnetic resonance frequency parallel to the static magnetic field based on the Landau–Lifshitz–Gilbert equation. We found that large spin motive force originating from standing spin waves driven by parametric excitation appears in the system. The observed time dependence of the voltage shows a dc voltage with an ac component oscillating with twice of the resonance frequency. The estimated amplitude of the voltage due to the spin motive force is [Formula: see text]. We also investigate spin motive force driven by different modes of standing spin waves. Our numerical results extend the way to generate spin motive force by making use of the magnetization dynamics with the steep spatial modulation created by nonlinear spin waves excitation, without a non-uniform magnetization structure such as a conventional magnetic domain wall and a vortex. </jats:p>

  9. Real-space observation of standing spin-wave modes in a magnetic disk

    Tomosato HIOKI, Tomonao Araki, Kosuke Umemura, Koujiro Hoshi, Eiji Saitoh

    Applied Physics Letters 121 (13) 132402-132402 2022年9月26日

    出版者・発行元: {AIP} Publishing

    DOI: 10.1063/5.0098772  

    ISSN:0003-6951 1077-3118

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    <jats:p> In-plane standing spin-wave modes in a minute magnetic disk are directly observed by using time-resolved magneto-optical microscopy synchronized with microwaves. The time-resolved microscopy allowed us to obtain snapshots of standing spin-wave modes in a magnetic disk, which show a hourglass-like standing spin wave pattern. We found that the characteristic pattern is caused by spatially nonuniform magnetization and a strong microwave excitation in terms of finite element calculation and micromagnetic simulations. The technique we developed in this work allows us to access magnetization dynamics in microstructured magnets under strong microwave pumping. </jats:p>

  10. Coupled-oscillator collective mode of a magnetic chiral soliton lattice

    Koujiro Hoshi, Jun-ichiro Kishine, Jun-ichiro Ohe

    Physical Review B 102 (13) 2020年10月12日

    出版者・発行元: American Physical Society ({APS})

    DOI: 10.1103/physrevb.102.134414  

    ISSN:2469-9950 2469-9969

  11. Magnon-drag thermoelectric transport with skyrmion structure

    Koujiro Hoshi, Terufumi Yamaguchi, Akihito Takeuchi, Hiroshi Kohno, Jun-ichiro Ohe

    Applied Physics Letters 117 (6) 062404-062404 2020年8月10日

    出版者・発行元: {AIP} Publishing

    DOI: 10.1063/5.0017272  

    ISSN:0003-6951 1077-3118

  12. Chirality-induced spin current through spiral magnets

    Hiroki Watanabe, Koujiro Hoshi, Jun-ichiro Ohe

    Physical Review B 94 (12) 2016年9月23日

    出版者・発行元: American Physical Society ({APS})

    DOI: 10.1103/physrevb.94.125143  

    ISSN:2469-9950 2469-9969

︎全件表示 ︎最初の5件までを表示

MISC 1

  1. マグノンドラッグ効果に関する理論的研究 招待有り 査読有り

    大江純一郎, 星幸治郎, 河野浩

    まぐね 16 (6) 305-311 2021年12月