论文标题

使用各向异性的局部不均匀性来控制偶极交换旋转波的传播

Controlling the propagation of dipole-exchange spin waves using local inhomogeneity of the anisotropy

论文作者

Mohseni, Morteza, Hillebrands, Burkard, Pirro, Philipp, Kostylev, Mikhail

论文摘要

自旋波是有望携带,运输和处理信息的候选人。控制磁性材料中自旋波的传播特性是设计基于自旋波的计算体系结构的重要成分。在这里,我们研究了表面不均匀性对通过薄膜传输的自旋波信号的影响。我们使用微磁模拟在面内磁性磁铁石榴石石榴石薄膜中研究自旋波动力学,在纳米范围内厚度在纳米范围内,以局部引入的单轴各向异性的形式存在表面缺陷。这些缺陷用于证明与磁静态表面旋转波(MSSW)相比,向后体积磁性旋转波(BVMSW)对反向散射的反应更大。对于这种特定的缺陷类型,这种行为的原因可以与两种类型的自旋波的镁带结构的差异相关。为了证明这一点,我们为散射过程开发了一种准分析理论。它显示出与微磁模拟的绝佳一致性,阐明了反向散射过程,并提供了一种新的方法来分析在足够薄膜中表面不均匀性的情况下分析自旋波的传播速率,为此,交换能量在Spin-Wave动力学中的作用很重要。我们的研究铺平了设计宏伟的逻辑设备的方法,以依靠自旋波传输的设计控制。

Spin waves are promising candidates to carry, transport, and process information. Controlling the propagation characteristics of spin waves in magnetic materials is an essential ingredient for designing spin-wave based computing architectures. Here, we study the influence of surface inhomogeneities on the spin-wave signals transmitted through thin films. We use micromagnetic simulations to study the spin-wave dynamics in an in-plane magnetized yttrium iron garnet thin film with a thickness in the nanometre range in the presence of surface defects in the form of locally introduced uniaxial anisotropies. These defects are used to demonstrate that the Backward Volume Magnetostatic Spin Waves (BVMSW) are more responsive to backscattering in comparison to Magnetostatic Surface Spin Waves (MSSWs). For this particular defect type, the reason for this behavior can be quantitatively related to the difference in the magnon band structures for the two types of spin waves. To demonstrate this, we develop a quasi-analytical theory for the scattering process. It shows an excellent agreement with the micromagnetic simulations, sheds light on the backscattering processes and provides a new way to analyze the spin-wave transmission rates in the presence of surface inhomogeneities in sufficiently thin films, for which the role of exchange energy in the spin-wave dynamics is significant. Our study paves the way to designing magnonic logic devices for data processing which rely on a designed control of the spin-wave transmission.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源