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> HIROSAWA Tomoki
(Last updated : 2025-05-30 06:23:06)
HIROSAWA Tomoki
Department / Course
Aoyama Gakuin University College of Science and Engineering Department of Physical Sciences
Job
Assistant Professor
Achievement
Specialization and related fields
Academic background
Business career
Book and thesis
Academic conference presentation
Specialization and related fields
Magnetism, superconductivity and strongly correlated systems
Academic background
1.
Master Graduate School, Division of Science The University of Tokyo Finished
2.
Doctorial Graduate School, Division of Science The University of Tokyo Finished
3.
The University of Tokyo
Business career
1.
2018/04 ~
2021/03
Special researcher of the Japan Society for the Promotion of Science
2.
2022/04/01 ~
Assistant Professor Aoyama Gakuin University College of Science and Engineering Department of Physical Sciences
Book and thesis
1.
Papers
Magnetoelectric Cavity Magnonics in Skyrmion Crystals (Co-authored) 2022/11
2.
Papers
Data-Driven Reconstruction of Spectral Conductivity and Chemical Potential Using Thermoelectric Transport Properties (Co-authored) 2022/10
3.
Papers
Observation of fractional spin textures in a Heusler material (Co-authored) 2022/04
4.
Papers
Laser-Controlled Real- and Reciprocal-Space Topology in Multiferroic Insulators (Co-authored) 2022/01
5.
Papers
Magnonic Quadrupole Topological Insulator in Antiskyrmion Crystals (Co-authored) 2020/11
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Academic conference presentation
1.
2024/08/08
Magnetoelectric cavity magnonics and topological magnon-plasmon-polaritons (New Frontiers in Advanced Magnetism 2024)
2.
2024/07/18
Antiferromagnetic skyrmion lattice of the 4-sublattice tetrahedral order (14th International Conference on Metamaterials, Photonic Crystals and Plasmonics)
3.
2024/03/04
Magnetoelectric Cavity Magnonics in Skyrmion Crystals (APS March Meeting 2024)
4.
2023/10/18
Data-driven reconstruction of spectral conductivity from thermoelectric data (Trends in the Theory of Quantum Materials 2023)
5.
2023/09/14
Magnetoelectric Cavity Magnonics in Skyrmion Crystals (International Workshop on Quantum Magnonic Hybrid Systems)
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