Yang Man, Sun Liang, Zeng Yulun, Cheng Jun, He Kang, Yang Xi, Wang Ziqiang, Yu Longqian, Niu Heng, Ji Tongzhou, Chen Gong, Miao Bingfeng, Wang Xiangrong, Ding Haifeng
National Laboratory of Solid State Microstructures, Department of Physics, Nanjing University, and Collaborative Innovation Center of Advanced Microstructures, Nanjing, 210093, P.R. China.
Physics Department, The Hongkong University of Science and Technology, Clear Water Bay, Kowloon, Hongkong.
Nat Commun. 2024 Apr 13;15(1):3201. doi: 10.1038/s41467-024-47577-x.
Yttrium iron garnet, a material possessing ultralow magnetic damping and extraordinarily long magnon diffusion length, is the most widely studied magnetic insulator in spintronics and magnonics. Field-free electrical control of perpendicular yttrium iron garnet magnetization with considerable efficiency is highly desired for excellent device performance. Here, we demonstrate such an accomplishment with a collinear spin current, whose spin polarization and propagation direction are both perpendicular to the interface. Remarkably, the field-free magnetization switching is achieved not only with a heavy-metal-free material, Permalloy, but also with a higher efficiency as compared with a typical heavy metal, Pt. Combined with the direct and inverse effect measurements, we ascribe the collinear spin current to the anomalous spin Hall effect in Permalloy. Our findings provide a new insight into spin current generation in Permalloy and open an avenue in spintronic devices.
钇铁石榴石是一种具有超低磁阻尼和极长磁振子扩散长度的材料,是自旋电子学和磁子学中研究最为广泛的磁绝缘体。为了实现优异的器件性能,人们非常希望能够以相当高的效率对垂直方向的钇铁石榴石磁化强度进行无磁场电控制。在此,我们通过一种共线自旋电流实现了这一目标,该自旋电流的自旋极化方向和传播方向均垂直于界面。值得注意的是,不仅使用无重金属材料坡莫合金实现了无磁场磁化翻转,而且与典型重金属铂相比,效率更高。结合直接和逆效应测量结果,我们将共线自旋电流归因于坡莫合金中的反常自旋霍尔效应。我们的发现为坡莫合金中自旋电流的产生提供了新的见解,并为自旋电子器件开辟了一条道路。