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Phononic and magnonic dispersions of surface waves on a permalloy/BARC nanostructured array

机译:坡莫合金/ BARC纳米结构阵列上的表面波的声子和大子色散

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摘要

Phononic and magnonic dispersions of a linear array of periodic alternating Ni80Fe20 and bottom anti-reflective coating nanostripes on a Si substrate have been measured using Brillouin light scattering. The observed phononic gaps are considerably larger than those of laterally patterned multi-component crystals previously reported, mainly a consequence of the high elastic and density contrasts between the stripe materials. Additionally, the phonon hybridization bandgap has an unusual origin in the hybridization and avoided crossing of the zone-folded Rayleigh and pseudo-Sezawa waves. The magnonic band structure features near-dispersionless branches, with unusual vortex-like dynamic magnetization profiles, some of which lie below the highly-dispersive fundamental mode branch. Finite element calculations of the phononic and magnonic dispersions of the magphonic crystal accord well with experimental data.
机译:已经使用布里渊光散射法测量了周期性交替的Ni80Fe20线性阵列和底部抗反射涂层纳米带在Si衬底上的声子和强子分散体。所观察到的声子间隙比先前报道的横向构图的多组分晶体的声子间隙大得多,这主要是条纹材料之间的高弹性和密度对比的结果。另外,声子杂交带隙在杂交中具有不同寻常的起源,并且避免了区域折叠的瑞利波和伪Sezawa波的交叉。磁能带结构具有近无色散的分支,具有不寻常的涡旋状动态磁化轮廓,其中一些位于高色散的基模分支之下。磁晶体的声子和磁子色散的有限元计算与实验数据非常吻合。

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