凝聚态物理
自旋电子学
磁化
极地的
磁电效应
扭矩
磁矩
材料科学
旋转
极化(电化学)
磁能
联轴节(管道)
磁各向异性
极化密度
范德瓦尔斯力
工作(物理)
磁铁
自旋(空气动力学)
磁畴
双层
物理
铁磁性
自旋极化
多铁性
感应耦合
磁电阻
作者
Zhong Shen,Jun Chen,Xiaoyan Yao,Shuai Dong
摘要
Energy-efficient fast switching of spin orientations or textures is a core issue of spintronics, which is highly demanded but remains challenging. Different from the mainstream routes based on spin-transfer torque or spin-orbit torque, here we propose another mechanism coined as magnetoelectric torque to switch the magnetization in polar magnetic bilayers via pure electric field. In some magnetic van der Waals bilayers, when the electrostatic energy of polarization can compensate the interlayer magnetic coupling, a magnetoelectric torque is generated to fastly flip spins within a few picoseconds, which is demonstrated by combining the first-principles calculations, analytic model, as well as atomistic simulations. Such a magnetoelectric torque doesn't rely on the spin-orbit coupling and is generally active in polar magnetic homostructures and heterostructures. Our work provides an alternative route to switch magnetization in nanoscale, which may benefit the energy-saving and fast-response spintronic devices.
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