论文标题

基于尖锐的抗铁磁域壁的原子尺度自旋波偏置层

Atomic-Scale Spin-Wave Polarizer Based on a Sharp Antiferromagnetic Domain Wall

论文作者

Faridi, Ehsan, Kim, Se Kwon, Vignale, Giovanni

论文摘要

从理论上讲,我们研究了抗磁性自旋链中尖锐的结构壁壁的旋转波的散射。虽然抗铁磁材料的连续模型产生了众所周知的结果,即旋转波可以通过无反射的宽区域壁穿过宽区域壁,但我们在这里表明,基于离散的自旋汉密尔顿,旋转波通常由域壁反射,域壁具有反射系数,随着域壁的宽度而增加。值得注意的是,我们发现,在原子尖锐的结构壁的有趣情况下,自旋波的反射表现出对自旋波的圆形极化状态的强烈依赖,这主要导致一个极化的反射,同时允许另一个偏振,从而实现了原子尺度的自旋波动器。透射自旋波的极化取决于尖锐的域壁中自旋的方向,该方向可以由外部场或自旋扭矩控制。我们利用尖锐的抗铁磁结构域壁作为原子尺度的自旋波偏振层,这使我们想象,超小的磁性孤子(例如域壁和天际)可以实现具有有用功能的原子尺度旋转波散射器。

We theoretically study the scattering of spin waves from a sharp domain wall in an antiferromagnetic spin chain. While the continuum model for an antiferromagnetic material yields the well-known result that spin waves can pass through a wide domain wall with no reflection, here we show that, based on the discrete spin Hamiltonian, spin waves are generally reflected by a domain wall with a reflection coefficient that increases as the domain-wall width decreases. Remarkably, we find that, in the interesting case of an atomically sharp domain wall, the reflection of spin waves exhibits strong dependence on the state of circular polarization of the spin waves, leading to mainly reflection for one polarization while permitting partial transmission for the other, thus realizing an atomic-scale spin-wave polarizer. The polarization of the transmitted spin wave depends on the orientation of the spin in the sharp domain wall, which can be controlled by an external field or spin torque. Our utilization of a sharp antiferromagnetic domain wall as an atomic-scale spin-wave polarizer leads us to envision that ultra-small magnetic solitons such as domain walls and skyrmions may enable realizations of atomic-scale spin-wave scatterers with useful functionalities.

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