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Spin dynamics in thin nanometric elliptical Permalloy dots: A Brillouin light scattering investigation as a function of dot eccentricity

机译:纳米椭圆椭圆坡莫合金薄点中的自旋动力学:布里渊光散射研究与点偏心率的关系

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Brillouin light scattering (BLS) spectra have been measured in arrays of cylindrical Permalloy dots with elliptical cross section, 200 nm wide, 15 nm thick, and eccentricities from 1 to 3. Several spin modes are observed and their frequencies tracked as a function of the direction of the applied 1.5 kOe magnetic field H. The experimental data are interpreted within the framework of the recently introduced dynamical matrix method to calculate spin excitations in magnetic particles. We find that the mode frequencies strongly depend on the eccentricity of the dots and on the direction of the applied field. For fields along the principal axes the solutions can be classified into: (ⅰ) modes localized near the particle ends, (ⅱ) modes with nodal lines perpendicular to H (backwardlike modes), (ⅲ) modes with nodal lines parallel to H (Damon-Eshbach-like modes) and (ⅳ) modes with both parallel and perpendicular nodal lines. In cases where the frequencies of two modes in different families are similar, some hybridization between the modes is observed. For H along nonsymmetry directions only the modes of type (ⅰ) remain reasonably well defined, other modes can at best be described as hybrids of modes in the above categories. Determining which of the modes is active in BLS experiments leads to excellent agreement with the experimental results.
机译:布里渊光散射(BLS)光谱已经在具有椭圆形横截面,宽200 nm,厚15 nm,偏心距为1到3的圆柱形坡莫合金点阵列中进行了测量。施加的1.5 kOe磁场H的方向。在最近引入的动力学矩阵方法的框架内解释了实验数据,以计算磁性粒子中的自旋激发。我们发现模式频率在很大程度上取决于点的偏心率和所施加场的方向。对于沿着主轴线的场,解决方案可以分类为:(ⅰ)局域在粒子末端附近的模式,(ⅱ)具有垂直于H的结线的模式(向后模式),(ⅲ)具有平行于H的结线的模式(Damon) -Eshbach-like模式)和具有平行和垂直节点线的(ⅳ)模式。在不同家族中两种模式的频率相似的情况下,观察到模式之间的某种杂交。对于沿着非对称方向的H,只有类型(ⅰ)的模式保持合理良好的定义,其他模式最多只能描述为上述类别中模式的混合。确定哪种模式在BLS实验中处于活动状态将导致与实验结果极好的一致性。

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