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首页> 外文期刊>Physical review, B >Zero-field propagation of spin waves in waveguides prepared by focused ion beam direct writing
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Zero-field propagation of spin waves in waveguides prepared by focused ion beam direct writing

机译:通过聚焦离子束直接写入制备的波导中旋转波的零场传播

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摘要

Metastable face-centered-cubic Fe78Ni22 thin films are excellent candidates for focused ion beam direct writing of magnonic structures due to their favorable magnetic properties after ion-beam-induced transformation. The focused ion beam transforms the originally nonmagnetic fcc phase into the ferromagnetic bcc phase with additional control over the direction of uniaxial magnetic in-plane anisotropy and saturation magnetization. Local magnetic anisotropy direction control eliminates the need for external magnetic fields, paving the way towards complex magnonic circuits with waveguides pointing in different directions. In the present study, we show that the magnetocrystalline anisotropy in transformed areas is strong enough to stabilize the magnetization in the direction perpendicular to the long axis of narrow waveguides. Therefore, it is possible to propagate spin waves in these waveguides in the favorable Damon-Eshbach geometry without the presence of any external magnetic field. Phase-resolved microfocused Brillouin light scattering yields the dispersion relation of these waveguides in zero as well as in nonzero external magnetic fields.
机译:亚料面向型立方Fe78Ni22薄膜是由于其在离子束诱导的转化后的良好磁性的磁性特性而聚焦离子束直接写入的优异候选。聚焦离子束将最初非磁性FCC相变换成铁磁BCC阶段,并在单轴磁性面内各向异性和饱和磁化方向上进行额外的控制。局部磁各向异性方向控制消除了对外部磁场的需求,使朝向具有指向不同方向的波导的复杂磁极铺平。在本研究中,我们表明转化区域中的磁镀各向异性足以足够强以稳定垂直于窄波导的长轴的方向上的磁化。因此,在没有任何外部磁场的情况下,可以在有利的Damon-eShbach几何形状中在这些波导中传播旋转波。相位分辨的微泡泡布里渊光散射产生零以及非零外部磁场中这些波导的分散关系。

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