Chen Peng, Huang Puyang, Li Zeyu, Liu Jieyi, Yao Qi, Sun Qiang, Li Ang, Liu Xinqi, Zhang Yifan, Cai Xinyu, Liu Jiuming, Liao Liyang, Yang Guanying, Liu Zhongkai, Yang Yumeng, Han Xiaodong, Zou Jin, Hesjedal Thorsten, Qiao Zhenhua, Kou Xufeng
School of Information Science and Technology, ShanghaiTech University, Shanghai 201210, China.
Shanghai Institute of Microsystem and Information Technology, Chinese Academy of Sciences, Shanghai 200050, China.
Sci Adv. 2025 May 16;11(20):eadt6084. doi: 10.1126/sciadv.adt6084.
Berry curvature and spin texture are representative tuning parameters that govern spin-orbit coupling-related physics and are also the foundation for future device applications. Here, we investigate the impact of the Sb-to-Bi ratio on shaping the electronic band structure and its correlated first- and second-harmonic magneto-transport signals in the intrinsic magnetic topological insulator Mn(BiSb)Te. First-principles calculations reveal that the introduction of Sb not only triggers a topological phase transition but also changes the integral of the Berry curvature at the shifted Fermi level, which leads to the reversal of the anomalous Hall resistance polarity for Sb fractions > 0.67. Moreover, it also induces the opposite spin splitting of the valence bands compared to the Sb-free host, and the resulting clockwise/counterclockwise spin chirality gives rise to a tunable unidirectional second-harmonic anomalous Hall response. Our findings pave the way for constructing chiral spin-orbitronic devices through band structure engineering.
贝里曲率和自旋纹理是控制自旋轨道耦合相关物理的代表性调节参数,也是未来器件应用的基础。在此,我们研究了Sb与Bi的比例对本征磁性拓扑绝缘体Mn(BiSb)Te中电子能带结构及其相关的一次和二次谐波磁输运信号形成的影响。第一性原理计算表明,Sb的引入不仅引发拓扑相变,还改变了移动费米能级处的贝里曲率积分,这导致Sb含量>0.67时反常霍尔电阻极性反转。此外,与无Sb主体相比,它还诱导价带产生相反的自旋分裂,由此产生的顺时针/逆时针自旋手性导致可调谐的单向二次谐波反常霍尔响应。我们的发现为通过能带结构工程构建手性自旋轨道电子器件铺平了道路。