2020年第67回応用物理学会春季学術講演会

講演情報

一般セッション(口頭講演)

10 スピントロニクス・マグネティクス » 10.1 新物質・新機能創成(作製・評価技術)

[15a-A501-1~13] 10.1 新物質・新機能創成(作製・評価技術)

2020年3月15日(日) 09:00 〜 12:30 A501 (6-501)

藤原 宏平(東北大)、葛西 伸哉(物材機構)

09:00 〜 09:15

[15a-A501-1] Observation of Weyl Cones in Ferromagnetic Heusler Alloy Films Co2MnGa by Spin- and Angle-Resolved Photoemission Spectroscopy

〇(P)Kazuki Sumida1、Yuya Sakuraba2、Keisuke Masuda2、Takashi Kono3、Masaaki Kakoki3、Kazuki Goto2、Koji Miyamoto4、Yoshio Miura2、Taichi Okuda4、Akio Kimura3 (1.Tokyo Tech.、2.NIMS、3.Hiroshima Univ.、4.HSRC)

キーワード:Heusler alloy, Weyl semimetal, Photoemission spectroscopy

Weyl semimetals are characterized by massless band dispersion in momentum space. When the Weyl semimetals meet magnetism, large anomalous transport properties would emerge due to their topological nature. In this study, we visualize the spin-polarized Weyl cone evolved from nodal lines of the film form of ferromagnetic Co2MnGa with full remanent magnetization by using in-situ spin- and angle-resolved photoemission spectroscopy and ab initio calculations. We also demonstrate that the anomalous Hall and Nernst conductivities grow when the Weyl node approaches the Fermi energy, and the highest anomalous Nernst thermopower ~6.2 μV/K is realized at room temperature among ferromagnetic films.