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J-GLOBAL ID:201801007104469224   Update date: Nov. 05, 2024

Kagawa Fumitaka

カガワ フミタカ | Kagawa Fumitaka
Affiliation and department:
Research field  (1): Inorganic materials
Research theme for competitive and other funds  (7):
  • 2021 - 2025 パルス印加による恒常的量子相変換の学理創成と再構成可能な非散逸電流回路への展開
  • 2018 - 2023 Creation of a new discipline, quantum glass, for electronic systems and its development to material science
  • 2018 - 2021 Exploration and control of metastable superconductivity with ultra rapid-cooling methods
  • 2013 - 2018 Interdisciplinary exploration of novel properties taking advantage of the controllability in molecular materials
  • 2015 - 2017 Study of charge glass induced by geometrical frustration
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Papers (71):
  • Soju Furuta, Wataru Koshibae, Keisuke Matsuura, Nobuyuki Abe, Fei Wang, Shuyun Zhou, Taka-hisa Arima, Fumitaka Kagawa. Reconsidering nonlinear emergent inductance: Time-varying Joule heating and its impact on AC electrical response. Physical Review B. 2024
  • Keisuke Matsuura, Yo Nishizawa, Yuto Kinoshita, Takashi Kurumaji, Atsushi Miyake, Hiroshi Oike, Masashi Tokunaga, Yoshinori Tokura, Fumitaka Kagawa. Low-temperature hysteresis broadening emerging from domain-wall creep dynamics in a two-phase competing system. Communications Materials. 2023
  • Daisuke Nakamura, Kosuke Karube, Keisuke Matsuura, Fumitaka Kagawa, Xiuzhen Yu, Yoshinori Tokura, Yasujiro Taguchi. Transport signatures of magnetic texture evolution in a microfabricated thin plate of antiskyrmion-hosting (Fe,Ni,Pd)3P. Physical Review B. 2023
  • Kosuke Karube, Victor Ukleev, Fumitaka Kagawa, Yoshinori Tokura, Yasujiro Taguchi, Jonathan S. White. Unveiling the anisotropic fractal magnetic domain structure in bulk crystals of antiskyrmion host (Fe,Ni,Pd)3P by small-angle neutron scattering. Journal of Applied Crystallography. 2022
  • Takuro Sato, Wataru Koshibae, Akiko Kikkawa, Yasujiro Taguchi, Naoto Nagaosa, Yoshinori Tokura, Fumitaka Kagawa. Nonthermal current-induced transition from skyrmion lattice to nontopological magnetic phase in spatially confined MnSi. Physical Review B. 2022
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