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Magnetic neutron scattering by magnetic vortices in thin submicron-sized soft ferromagnetic cylinders

机译:磁性涡流在薄亚微米型软铁磁缸中散射磁性中子散射

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摘要

Using analytical expressions for the magnetization textures of thin submicron-sized magnetic cylinders in vortex state, we derive closed-form algebraic expressions for the ensuing small-angle neutron scattering (SANS) cross sections. Specifically, for the perpendicular and parallel scattering geometries, we have computed the cross sections for the case of small vortex-center displacements without formation of magnetic charges on the side faces of the cylinder. The results represent a significant qualitative and quantitative step forward in SANS-data analysis on isolated magnetic nanoparticle systems, which are commonly assumed to be homogeneously or stepwise-homogeneously magnetized. We suggest a way to extract the fine details of the magnetic vortex structure during the magnetization process from the SANS measurements in order to help resolving the long-standing question of the magnetic vortex displacement mode.
机译:在涡旋状态下使用用于薄亚微米型磁缸的磁化纹理的分析表达式,我们导出了随后的小角中子散射(SAN)横截面的闭合代数表达式。具体地,对于垂直和平行的散射几何形状,我们已经计算了小涡体中心位移的情况下的横截面,而无需在汽缸的侧面上形成磁性电荷。结果代表了分离磁性纳米粒子系统的SANS数据分析中的显着性定性和定量步骤,其通常假设均匀地或逐步均匀地磁化。我们建议一种方法从SAN测量中磁化过程期间提取磁性涡流结构的细节,以帮助解决磁性涡流模式的长期存在。

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