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Soft x-ray resonant magneto-optical Kerr effect as a depth-sensitive probe of magnetic heterogeneity: Its application to resolve helical spinstructures using linear p polarization

机译:软x射线共振磁光克尔效应作为磁异质性的深度敏感探针:其在解决螺旋自旋中的应用使用线性p极化的结构

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摘要

We have calculated the soft x-ray resonant Kerr intensities as a function of the incident grazing angle of linearly p-polarized waves from the model spin structures, where the chirality (handedness) of the spin spirals (twist in depth) in a magnetic layer and the periodicity of a unit spiral are designed to vary. Variations in the chirality and the periodicity lead to noticeable changes in the Kerr intensity versus the grazing angle, which is due not only to a large sensitivity of the Kerr intensity of the linear p polarization to both the magnitude and direction of the transverse components of magnetizations, but also to a large dependence of the depth sensitivity on the grazing angle at the resonance regions. The measurement and analysis of the specular Kerr intensity are relatively straightforward in determining the inhomogeneous spin structures in depth, compared to those of the Kerr rotation and ellipticity. This is proven to be a convenient and useful probe to determine the handedness of spin spiral structures, as well as to resolve the detailed magnetic heterostructures in depth in ultrathin-layered films.
机译:我们已经计算了软X射线共振Kerr强度与来自模型自旋结构的线性p极化波的入射掠射角的函数,其中磁性层中自旋螺旋的手性(惯性)(深度扭曲)并且单位螺旋的周期性被设计为变化。手性和周期性的变化会导致Kerr强度相对于掠射角发生明显变化,这不仅是由于线性p极化的Kerr强度对磁化横向分量的大小和方向都具有较大的敏感性但是,这也很大程度上取决于深度灵敏度对共振区域的掠射角的依赖性。与Kerr旋转和椭圆度相比,镜面Kerr强度的测量和分析在确定深度上的非均匀自旋结构时相对简单。事实证明,这是确定自旋螺旋结构的惯用性以及解决超薄层薄膜中深度的详细磁异质结构的方便且有用的探针。

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