研究者業績

高橋 龍之介

タカハシ リュウノスケ  (Ryunosuke Takahashi)

基本情報

所属
兵庫県立大学 大学院理学研究科 物質科学専攻 物質構造制御学部門 助教
学位
博士(理学)(2025年3月 兵庫県立大学)

連絡先
rtakahashisci.u-hyogo.ac.jp
研究者番号
61019452
ORCID ID
 https://orcid.org/0000-0002-6099-5201
J-GLOBAL ID
202501010479616106
researchmap会員ID
R000085205

外部リンク

学歴

 1

論文

 17
  • Ryunosuke Takahashi, Hayato Seno, Marin Takahashi, Shigetoshi Tomita, Reo Fukunaga, Suguru Nakata, Takayuki Nagai, Shigetada Yamagishi, Yoichi Kajita, Tsuyoshi Kimura, Masami Kanzaki, Hiroki Wadati
    2025年12月26日  
    Ferroaxial order is characterized by the breaking of mirror symmetry parallel to the crystallographic principal axis, which often originates from spontaneous rotational distortions of the crystal lattice. Such rotational distortions are, by symmetry, allowed to couple to specific phonon modes. However, Raman-active phonons associated with these rotational distortions have not yet been clearly identified on a symmetry-consistent basis. Here, we perform polarization-resolved Raman spectroscopy on the ferroaxial phase of Na2BaNi(PO4)2 single crystals and combine the measurements with first-principles lattice-dynamics calculations. This symmetry-guided analysis enables a comprehensive assignment of Raman-active modes in the ferroaxial phase. Several low-frequency Ag modes exhibit finite linewidth broadening, suggesting that these phonons may be weakly affected by the underlying rotational distortion. These results establish a symmetry-based spectroscopic framework for analyzing phonons associated with rotational distortions in ferroaxial materials and provide a basis for future studies of ferroaxial order in complex oxides.
  • Reo Fukunaga, Ryunosuke Takahashi, Tetsuro Ueno, Hiroki Shoji, Yoshihiko Togawa, Hiroki Wadati
    2025年12月11日  
    Ferromagnetic resonance (FMR) is a fundamental technique for probing magnetization dynamics in spintronic and magnetic materials. However, conventional FMR measurements rely on broadband vector network analyzers (VNAs), whose high cost limits accessibility for small laboratories and educational environments. To overcome this barrier, we have developed a compact and low-cost FMR measurement platform - the NanoVNA-FMR system-based on a commercially available NanoVNA. The setup integrates an electromagnet and a coplanar waveguide (CPW) and is fully automated using Python scripts. This enables synchronized magnetic-field sweeping, S-parameter acquisition, and real-time visualization. The system successfully captures clear FMR spectra that exhibit systematic shifts in resonance frequency with increasing magnetic field. The results are in excellent agreement with those obtained using a conventional VNA-based FMR system, confirming the quantitative reliability of the NanoVNA approach. Additionally, a 3D-printed sample holder further reduces overall system cost. These results demonstrate that the NanoVNA-FMR system provides a practical, accurate, and accessible alternative for quantitative magnetic characterization and educational applications.
  • Hiroya Ohtsuki, Suguru Nakata, Yu Yamane, Ryunosuke Takahashi, Koichi Kusakabe, Hiroki Wadati
    Zeitschrift für anorganische und allgemeine Chemie 2025年6月24日  
  • Ryunosuke Takahashi, Yann Le Guen, Suguru Nakata, Junta Igarashi, Julius Hohlfeld, Grégory Malinowski, Lingling Xie, Daisuke Kan, Yuichi Shimakawa, Stéphane Mangin, Hiroki Wadati
    Applied Physics Letters 2025年5月26日  
  • S. Nakata, M. Bejas, J. Okamoto, K. Yamamoto, D. Shiga, R. Takahashi, H. Y. Huang, H. Kumigashira, H. Wadati, J. Miyawaki, S. Ishida, H. Eisaki, A. Fujimori, A. Greco, H. Yamase, D. J. Huang, H. Suzuki
    Physical Review B 2025年4月21日  

MISC

 2

講演・口頭発表等

 7

担当経験のある科目(授業)

 1

共同研究・競争的資金等の研究課題

 5