首页> 美国卫生研究院文献>Scientific Reports >Direct Observation of Interfacial Dzyaloshinskii-Moriya Interaction from Asymmetric Spin-wave Propagation in W/CoFeB/SiO2 Heterostructures Down to Sub-nanometer CoFeB Thickness
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Direct Observation of Interfacial Dzyaloshinskii-Moriya Interaction from Asymmetric Spin-wave Propagation in W/CoFeB/SiO2 Heterostructures Down to Sub-nanometer CoFeB Thickness

机译:从W / CoFeB / SiO2异质结构中的不对称自旋波传播直至亚纳米CoFeB厚度的界面Dzyaloshinskii-Moriya相互作用的直接观察

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摘要

Interfacial Dzyaloshinskii-Moriya interaction (IDMI) is important for its roles in stabilizing the skyrmionic lattice as well as soliton-like domain wall motion leading towards new generation spintronic devices. However, achievement and detection of IDMI is often hindered by various spurious effects. Here, we demonstrate the occurrence of IDMI originating primarily from W/CoFeB interface in technologically important W/CoFeB/SiO2 heterostructures using Brillouin light scattering technique. Due to the presence of IDMI, we observe asymmetry in the peak frequency and linewidth of the spin-wave spectra in the Damon-Eshbach (DE) geometry at finite k wave-vectors. The DMI constant is found to scale as the inverse of CoFeB thickness, over the whole studied thickness range, confirming the presence of IDMI in our system without any extrinsic effects. Importantly, the W/CoFeB interface shows no degradation down to sub-nanometer CoFeB thickness, which would be useful for devices that aim to use pronounced interface effects.
机译:界面Dzyaloshinskii-Moriya交互作用(IDMI)对于稳定天体离子晶格以及孤子状畴壁运动(从而导致新一代自旋电子器件)起着重要作用。但是,IDMI的实现和检测通常受到各种杂散效应的阻碍。在这里,我们使用布里渊光散射技术证明IDMI的发生主要源自W / CoFeB界面在技术上重要的W / CoFeB / SiO2异质结构中。由于IDMI的存在,我们在有限的k个波矢处观察到Damon-Eshbach(DE)几何图中自旋波谱的峰值频率和线宽不对称。在整个研究的厚度范围内,发现DMI常数与CoFeB厚度成反比,证实了我们系统中IDMI的存在,没有任何外部影响。重要的是,W / CoFeB界面显示出直至亚纳米CoFeB厚度都不会降低,这对于旨在使用显着界面效应的设备很有用。

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