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Orbital magnetoresistance in the antiferromagnet CoO driven by dynamic orbital angular momentum

反強磁性体CoOにおける動的軌道角運動量によって駆動される軌道磁気抵抗

Schmitt, C.*; 吉川 貴史; Kl$"a$ui, M.*; 他22名*

Schmitt, C.*; Kikkawa, Takashi; Kl$"a$ui, M.*; 22 of others*

Recent predictions of orders of magnitude larger orbital current effects compared with spin currents have attracted considerable interest. However, orbital currents must first be converted into spin currents to interact with the static magnetization dominated by spin angular momentum in conventional magnets. By using a magnet dominated by orbital angular momentum (OAM), we demonstrate a 70-fold enhancement in orbital Hall magnetoresistance in cobalt II oxide/copper (CoO/Cu*), compared with spin Hall magnetoresistance in cobalt II oxide/platinum (CoO/Pt). This arises from interactions between dynamic OAM from surface-oxidized Cu* and static OAM in the antiferromagnetic insulator CoO. Our results show how by using OAM-dominated materials, we can harness the benefits of giant orbital currents that have not been possible using conventional spin-dominated magnets.

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