• Search Research Projects
  • Search Researchers
  • How to Use
  1. Back to previous page

Exploration of quantum transport induced by emergent magnetic field in real and momentum space

Research Project

Project/Area Number 22K20348
Research Category

Grant-in-Aid for Research Activity Start-up

Allocation TypeMulti-year Fund
Review Section 0202:Condensed matter physics, plasma science, nuclear engineering, earth resources engineering, energy engineering, and related fields
Research InstitutionThe University of Tokyo

Principal Investigator

Yamada Rinsuke  東京大学, 大学院工学系研究科(工学部), 助教 (80962133)

Project Period (FY) 2022-08-31 – 2024-03-31
Project Status Completed (Fiscal Year 2023)
Budget Amount *help
¥2,860,000 (Direct Cost: ¥2,200,000、Indirect Cost: ¥660,000)
Fiscal Year 2023: ¥1,430,000 (Direct Cost: ¥1,100,000、Indirect Cost: ¥330,000)
Fiscal Year 2022: ¥1,430,000 (Direct Cost: ¥1,100,000、Indirect Cost: ¥330,000)
Keywordsトポロジカル物質 / 強相関電子系 / 熱電効果 / 量子輸送 / 高移動度 / ワイル磁性体 / ベリー位相
Outline of Research at the Start

現在の半導体産業では電子の粒子性が中心的な役割を果たしているが、本研究では電子の量子力学的な波としての性質に着目した新奇輸送現象の開拓を行う。電子が非自明な位相を有するトポロジカル磁性体を対象として、実空間と波数空間におけるトポロジーを活用することで、巨大な異常ホール効果や異常ネルンスト効果などの電子の量子位相に由来した量子現象の観測を目指す。

Outline of Final Research Achievements

In this study, we aim to search for novel quantum phenomena due to the interplay of spin structure in real space and electronic structure in momentum space. Specifically, we focused on RAlSi (R = rare earth), a magnetic Weyl semimetal with broken spatial inversion symmetry. Here, we used the thermoelectric effect, which is known to be a sensitive probe of the electronic state near the Fermi surface. The Nernst effect in NdAlSi increases toward lower temperatures and reaches a maximum at slightly higher temperatures than the magnetic transition temperature. Combining the semiclassical model analysis with first-principles calculations of the band structure, it is found that the enhancement near the magnetic transition temperature is due to an anomaly in the scattering time associated with the Fermi surface nesting.

Academic Significance and Societal Importance of the Research Achievements

従来の熱電効果は物質のキャリア数が少なくなるほど増大するため、候補物質の探索領域が希薄キャリア半導体を中心としたものに限られることが多かった。本研究では、磁気的な周期構造を有する物質の磁気転移温度付近で、散乱時間の揺らぎによって熱電効果が増大する可能性を明らかにした。この効果は、キャリア数の多い金属的な試料でも発現することから、より幅広い物質において発現すると考えられ、熱電効果の探索領域が拡大することが期待される。今後は、磁気的な周期構造にとどまらず、電荷の周期構造(電荷密度波)に起因した熱電効果の探索が興味深い研究方針と考えられる。

Report

(3 results)
  • 2023 Annual Research Report   Final Research Report ( PDF )
  • 2022 Research-status Report
  • Research Products

    (9 results)

All 2024 2023 2022 Other

All Journal Article (1 results) (of which Int'l Joint Research: 1 results,  Peer Reviewed: 1 results,  Open Access: 1 results) Presentation (7 results) (of which Int'l Joint Research: 3 results,  Invited: 1 results) Remarks (1 results)

  • [Journal Article] Nernst Effect of High-Mobility Weyl Electrons in NdAlSi Enhanced by a Fermi Surface Nesting Instability2024

    • Author(s)
      Yamada Rinsuke、Nomoto Takuya、Miyake Atsushi、Terakawa Toshihiro、Kikkawa Akiko、Arita Ryotaro、Tokunaga Masashi、Taguchi Yasujiro、Tokura Yoshinori、Hirschberger Max
    • Journal Title

      Physical Review X

      Volume: 14 Issue: 2 Pages: 1-12

    • DOI

      10.1103/physrevx.14.021012

    • Related Report
      2023 Annual Research Report
    • Peer Reviewed / Open Access / Int'l Joint Research
  • [Presentation] 量子極限における擬一次元強相関ディラック電子による新奇量子相の探索2024

    • Author(s)
      山田林介
    • Organizer
      学術変革領域研究(A)「1000テスラ科学」 第三回領域会議
    • Related Report
      2023 Annual Research Report
  • [Presentation] らせんワイル磁性体GdAlSiにおける異方的電子特性2023

    • Author(s)
      Rinsuke Yamada, Ryota Nakano, Sebastian Esser, Masaki Gen, Akiko Kikkawa, Yasujiro Taguchi, Maurice Colling, Jan Masell, Masashi Tokunaga, Hajime Sagayama, Hiroyuki Ohsumi, Yoshikazu Tanaka, Takahisa Arima, Yoshinori Tokura, Max Hirschberger
    • Organizer
      新学術領域研究 量子液晶の物性科学 令和5年度 領域研究会
    • Related Report
      2023 Annual Research Report
  • [Presentation] Nernst effect of high-mobility Weyl electrons in NdAlSi enhanced by a Fermi surface nesting instability2023

    • Author(s)
      R. Yamada, T. Nomoto, R. Arita, A. Kikkawa, Y. Taguchi, A.Miyake, M. Tokunaga, Y. Tokura, M. Hirschberger
    • Organizer
      The IEEE Around-the-Clock Around-the-Globe Magnetics Conference
    • Related Report
      2023 Annual Research Report
    • Int'l Joint Research
  • [Presentation] ワイル半金属NdAlSiにおけるフェルミ面のネスティングに起因したネルンスト効果の増大2023

    • Author(s)
      山田林介, 野本拓也, 有田亮太郎, 吉川明子, 田口康二郎, 三宅厚志, 徳永将司, 十倉好紀, Max Hirschberger
    • Organizer
      日本物理学会 第78回年次大会
    • Related Report
      2023 Annual Research Report
  • [Presentation] Quantum transport phenomena in correlated topological semimetals2023

    • Author(s)
      R. Yamada, J. Fujioka, M. Kawamura, D. Hashizume, S. Sakai, M. Hirayama, T. Nomoto, R. Arita, A. Kikkawa, R. Kurihara, A. Miyake, M. Tokunaga, Y. Taguchi, Y. Tokura, M. Hirschberger
    • Organizer
      Quantum Magnetism and Topology 2023
    • Related Report
      2023 Annual Research Report
    • Int'l Joint Research / Invited
  • [Presentation] Giant anomalous Hall effect due to skew scattering in magnetic Weyl semimetal NdAlSi2022

    • Author(s)
      R. Yamada, M. Hirschberger, T. Nomoto, R. Arita, A. Kikkawa, Y. Taguchi, Y. Tokura
    • Organizer
      29th International Conference on Low Temperature Physics
    • Related Report
      2022 Research-status Report
    • Int'l Joint Research
  • [Presentation] 磁性ワイル半金属NdAlSiにおけるネルンスト効果の増大2022

    • Author(s)
      山田林介, 野本拓也, 有田亮太郎, 吉川明子, 田口康二郎, 三宅厚志, 徳永将司, 十倉好紀, Max Hirschberger
    • Organizer
      日本物理学会2022年秋季大会
    • Related Report
      2022 Research-status Report
  • [Remarks] Research map

    • URL

      https://researchmap.jp/r_yamada

    • Related Report
      2023 Annual Research Report

URL: 

Published: 2022-09-01   Modified: 2025-01-30  

Information User Guide FAQ News Terms of Use Attribution of KAKENHI

Powered by NII kakenhi