反铁磁性
自旋电子学
扭矩
凝聚态物理
自旋(空气动力学)
物理
旋转扭矩传递
自旋极化
铁磁性
量子力学
热力学
磁场
磁化
电子
作者
Hua Bai,Lei Han,Xiaoyu Feng,Yongjian Zhou,Rongxuan Su,Qiao Wang,Liyang Liao,Wenxuan Zhu,X. Z. Chen,Feng Pan,Xiaolong Fan,Cheng Song
标识
DOI:10.1103/physrevlett.128.197202
摘要
Current-induced spin torques provide efficient data writing approaches for magnetic memories. Recently, the spin splitting torque (SST) was theoretically predicted, which combines advantages of conventional spin transfer torque (STT) and spin-orbit torque (SOT) as well as enables controllable spin polarization. Here we provide the experimental evidence of SST in collinear antiferromagnet RuO_{2} films. The spin current direction is found to be correlated to the crystal orientation of RuO_{2} and the spin polarization direction is dependent on (parallel to) the Néel vector. These features are quite characteristic for the predicted SST. Our finding not only presents a new member for the spin torques besides traditional STT and SOT, but also proposes a promising spin source RuO_{2} for spintronics.
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