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Discrete modes of a ferromagnetic stripe dipolarly coupled to a ferromagnetic film: a Brillouin light scattering study

机译:双极耦合至铁磁膜的铁磁条的离散模式:布里渊光散射研究

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摘要

Spin wave excitations in a magnetic structure consisting of a series of long permalloy stripes of a rectangular cross section magnetized along the stripe length and situated above a continuous permalloy film are studied both experimentally and theoretically. Stripes and continuous film are coupled by dipole-dipole interaction across 10 nm thick Cu spacers. Experimental measurements made using the Brillouin light scattering technique (with the light wavevector oriented along the stripe width) provide evidence for one dispersive spin wave mode associated with the continuous film and several discrete nondispersive modes resonating within the finite width of the stripes. To interpret the experimental spectra, an analytic theory based on the spin wave formalism for finite-width magnetic stripes has been developed, achieving a good qualitative and partly quantitative description of the experimentally observed spin wave spectrum of the system. In particular, it is explained why the presence of a continuous magnetic film near the magnetic stripe leads to a substantial decrease of the frequencies of the discrete dipolar spin wave modes localized within the stripes. A more quantitative description of the measured frequencies and of the spatial profiles of the spin wave eigenmodes has been obtained by numerical calculations performed using a finite element method.
机译:对磁性结构中的自旋波激发进行了实验和理论研究,该磁性结构由一系列长的坡莫合金条组成,这些长坡莫合金条沿磁条长度磁化并且位于连续的坡莫合金膜上方。条纹和连续膜通过跨过10 nm厚的Cu间隔物的偶极-偶极相互作用耦合。使用布里渊光散射技术进行的实验测量(光波矢量沿条纹宽度定向)为与连续膜相关的一种色散自旋波模式和在条纹的有限宽度内共振的几种离散非色散模式提供了证据。为了解释实验光谱,已经开发了基于自旋波形式主义的有限宽度磁条的分析理论,从而获得了对系统观察到的自旋波谱的良好定性和部分定量描述。特别地,解释了为什么在磁条附近存在连续的磁性膜导致显着降低了位于磁条内的离散偶极自旋波模式的频率。通过使用有限元方法进行的数值计算,获得了对自旋波本征模式的测量频率和空间分布的更定量描述。

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