Wang Kexin, Zhang Butian, Yan Chengyu, Du Luojun, Wang Shun
MOE Key Laboratory of Fundamental Physical Quantities Measurement and Hubei Key Laboratory of Gravitation and Quantum Physics, PGMF and School of Physics, Huazhong University of Science and Technology, Wuhan, 430074, China.
Beijing National Laboratory for Condensed Matter Physics; Key Laboratory for Nanoscale Physics and Devices, Institute of Physics, Chinese Academy of Sciences, Beijing, 100190, China.
Nat Commun. 2024 Oct 19;15(1):9036. doi: 10.1038/s41467-024-53425-9.
Centrosymmetric materials with site inversion asymmetries possess hidden spin polarization, which remains challenging to be converted into spin currents because the global inversion symmetry is still conserved. This study demonstrates the spin-polarized circular photocurrents in centrosymmetric transition metal dichalcogenide semiconductors at normal incidence without applying electric bias. The global inversion symmetry is broken by using a spatially-varying circularly polarized light beam, which could generate spin gradient owing to the hidden spin polarization. The dependence of the circular photocurrents on electrode configuration, illumination position, and beam spot size indicates an emergence of circulating electric current under spatially inhomogeneous light, which is associated with the deflection of spin-polarized current through the inverse spin Hall effect. The circular photocurrents is subsequently utilized to probe the spin polarization and the inverse spin Hall effect under different excitation wavelengths and temperatures. The results of this study demonstrate the feasibility of using centrosymmetric materials with hidden spin polarization and non-vanishing Berry curvature for spintronic device applications.
具有位反不对称性的中心对称材料拥有隐藏的自旋极化,由于整体反演对称性仍然守恒,将其转化为自旋电流仍然具有挑战性。本研究展示了在中心对称过渡金属二硫属化物半导体中,在垂直入射且不施加电偏压的情况下的自旋极化圆光电流。通过使用空间变化的圆偏振光束打破了整体反演对称性,由于隐藏的自旋极化,该光束可产生自旋梯度。圆光电流对电极配置、照明位置和束斑尺寸的依赖性表明,在空间不均匀光下出现了循环电流,这与通过逆自旋霍尔效应的自旋极化电流的偏转有关。随后利用圆光电流来探测不同激发波长和温度下的自旋极化和逆自旋霍尔效应。本研究结果证明了使用具有隐藏自旋极化和非零贝里曲率的中心对称材料用于自旋电子器件应用的可行性。