论文标题
耗散旋转大厅扭矩下的集体自旋动力学
Collective spin dynamics under dissipative spin Hall torque
论文作者
论文摘要
分层磁异质结构中电流引起的自旋扭矩在广泛的磁性材料之间具有许多共同点。这些不仅包括共线铁磁铁,铁磁铁和抗铁磁铁,还包括更复杂的非共线自旋系统。我们开发了一种一般的Lagrangian-Rayleigh方法来研究耗散扭矩的作用,该方法可以将能量泵入长波长磁动力学,从而导致动态不稳定性。尽管这种扭矩的瑞利结构在不同的磁性材料上相似,但它们的后果敏感地取决于阶的性质,尤其是在是否存在净磁矩上。后者赋予了系统的单极切换能力,而磁补偿的材料往往朝着极限周期发展,在大扭矩下,手性取决于扭矩符号。除了铁磁和抗铁磁病例外,我们还讨论了铁磁铁,这些磁铁在切换和极限周期之间表现出复杂的竞争。作为补偿非共线秩序的简单案例,我们考虑各向同性旋转玻璃,以及它们与共线磁性共存的情况。
Current-induced spin torques in layered magnetic heterostructures have many commonalities across broad classes of magnetic materials. These include not only collinear ferromagnets, ferrimagnets, and antiferromagnets, but also more complex noncollinear spin systems. We develop a general Lagrangian-Rayleigh approach for studying the role of dissipative torques, which can pump energy into long-wavelength magnetic dynamics, causing dynamic instabilities. While the Rayleigh structure of such torques is similar for different magnetic materials, their consequences depend sensitively on the nature of the order and, in particular, on whether there is a net magnetic moment. The latter endows the system with a unipolar switching capability, while magnetically compensated materials tend to evolve towards limit cycles, at large torques, with chirality dependent on the torque sign. Apart from the ferromagnetic and antiferromagnetic cases, we discuss ferrimagnets, which display an intricate competition between switching and limit cycles. As a simple case for compensated noncollinear order, we consider isotropic spin glasses, as well as a scenario of their coexistence with a collinear magnetic order.