Néel-order-dependent transverse transport in noncoplanar antiferromagnet MnTe2
Qi Feng, Yilin Han, Yongkai Li, Yuqing Hu, Mo Tian, Qiuli Li, Huimin Peng, Jinrui Zhong, Zhiwei Wang, Zhi-Ming Yu, Junxi Duan, Yugui Yao
Abstract
Antiferromagnets hold appealing potential in next-generation spintronic devices with higher frequency and scalability, thanks to their alternating spin orientations that cancel out net magnetization. However, the lack of a nonzero magnetization makes the detection of the magnetic configuration of antiferromagnet difficult, hampering the applications of antiferromagnets. Here, we report a new transverse transport effect in noncoplanar antiferromagnet MnTe2. This effect is antisymmetric in both magnetic field and Néel order, but symmetric in its two indices. It can be understood in terms of the contribution induced by both magnetic field and geometric quantities, as confirmed by our theoretical calculations. Our discovery of a new Néel-order-dependent transverse transport effect provides opportunities to the advancing antiferromagnetic spintronics.
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