top of page

​Akane Inda

Graduate School of Science, Hokkaido University

Akane Inda is a first year of doctor course student in Hayami group, Department of Physics, the University of Hokkaido.

Publications

"Emergent cross-product-type spin-orbit coupling under ferroaxial ordering"
"Quantification of chirality based on electric toroidal monopole"
"Magnetic instability under ferroaxial moment"
"Nonlinear Transverse Magnetic Susceptibility under Electric Toroidal Dipole Ordering"

​Presentations

International (Oral talk)

A. Inda and S. Hayami, "Quantitative evaluation of chirality using the electric toroidal monopole", New Frontiers in Advanced Magnetism 2024, Sapporo, Japan (8/6-9 2024)

International (Poster Presentation)

・A. Inda, R. Oiwa, S. Hayami, H. Yamamoto, and H. Kusunose, "Quantification of chirality based on electric toroidal monopole: Application to a twisted methane molecule", META 2024, Toyama, Japan (7/16-19 2024) ・A. Inda, H. Kusunose, H. Yamamoto, and S. Hayami, "Quantification of chirality based on electric toroidal monopole", MRM 2023, Kyoto, Japan (12/11-16 2023) ・A. Inda and S. Hayami, "Third-order transverse magnetic susceptibility under ferro-axial ordering", International Conference on Quantum Liquid Crystals 2023, Hokkaido University, Hokkaido, Japan (8/8-10 2023)

Domestic (Oral talk)

・A. Inda, S. Hayami, "Microscopic origin of ferroaxial ordering induced by rotational distortion"(19aE306-5) ・R. Oiwa, A. Inda, S. Hayami, H. Kusunose, "Microscopic stability mechanism of the helical structure of Tellurium"(18pE307-14) ・A. Inda, R. Oiwa, H. Kusunose, H. Yamamoto, S. Hayami, "Analysis of chiralized methane molecule using electric toroidal monopole"(19aG1-9) ・R. Oiwa, A. Inda, S. Hayami, T. Nomoto, R. Arita, H. Kusunose, "Construction of symmetry-adapted Closest Wannier models using multipole basis"(18pL3-8) ・A. Inda, S. Hayami, "Magnetic instability under electric toroidal dipole ordering"(17aA401-2) ・A. Inda,S. Hayami, "Nonlinear transverse magnetic susceptibility under electric toroidal dipole ordering"(23aH3-4)

Domestic (Poster Presentation)

・R. Oiwa, A. Inda, S. Hayami, T. Nomoto, R. Arita, and H. Kusunose, "Symmetry-adapted closest Wannier tight-binding models", FYR05 QLC meeting, The University of Tokyo, ISSP, Chiba (12/26-28 2023) ・A. Inda, S. Hayami, Transformative Research Areas (A) "Asymmetric Quantum Matters" Topical Meeting, Kobe Univ. (12/6-7 2024) ・A. Inda, S. Hayami, "Quantitative analysis of chirality based on electric toroidal monopole", Transformative Research Areas (A) "Asymmetric Quantum Matters" FY2024 Area General Meeting/Public Research Kickoff Meeting, Higashi Hiroshima Arts & Culture Hall Kurara, Hiroshima (5/29-31 2024) ・A. Inda and S. Hayami, "Nonlinear transverse magnetic susceptibility under ferroaxial ordered state", Grant-in-Aid for Transformative Research Areas (A), "[in Japanese] アシンメトリが彩る量子物質の可視化・設計・創出", Topical meeting, Hokkaido University, Hokkaido (8/30-31 2023)

​CV

​Education
  • Doctor of Science, Hayami group, Department of Physics, The University of Hokkaido, Hokkaido, Japan (Apr. 2025-present)

  • Master of Science, Hayami group, Department of Physics, The University of Hokkaido, Hokkaido, Japan (Mar. 2025)
    Master thesis : “Physical properties of electric toroidal multipole ordering according to mirror symmetry breaking”

  • Bachelor of Science, Hayami group, Department of Physics, The University of Hokkaido, Hokkaido, Japan (Mar. 2023)​
    Graduate thesis : "Nonlinear Transverse Magnetic Susceptibility under Electric Toroidal Dipole Ordering"

​Experience
  • Apr. 2023 – Jul. 2023 : Teaching assistant (Introductory Computer Programming)

  • Oct. 2024 – Mar. 2025 : Teaching assistant (Physics Ⅱ)

​Awards
  • ​Student Presentation Award (Division 7, JPS Spring Meeting, Mar. 2024)

  • Poster Award (ASYMMETRY: Unveiling, Design, and Development of Asymmetric Quantum Matters Annual Meeting, May 2024)

  • ​Editors' Suggestion"Emergent cross-product-type spin-orbit coupling under ferroaxial ordering"
    A. Inda and S. Hayami, Phys. Rev. B 111, L041104 (2025).

​Contact

 Adress

Faculty of Science Bldg

Department of Physics, Hokkaido University

Kita 10 Nishi 8, Kita-ku, Sapporo, Hokkaido 060-0810, JAPAN

​TEL

+81-11-706-2696

​E-mail

inda[!AT!]phys.sci.hokudai.ac.jp

Citrus Fruits

© 2025 by Akane Inda. Powered and secured by Wix

bottom of page