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Magneto-optical Kerr effect susceptometer for the analysis of magnetic domain wall dynamics

机译:磁光克尔效应感受器,用于分析磁畴壁动力学

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摘要

Domain wall dynamics in thin magnetic films with perpendicular and in-plane anisotropy is studied using a novel magneto-optical Kerr effect susceptometry method. The method allows for measurements of domain wall motion under ac field excitation and the analysis of dynamic modes as a function of driving frequency and magnetic field amplitude. Domain wall dynamics in the perpendicular anisotropy system, a Co/Pt multilayer, is characterized by thermally activated creep motion. For this dynamic mode, a polydispersivity exponent of β = 0.50 ± 0.03 is derived at small excitation energy, which is in excellent agreement with theoretical models. The dynamics of the other system, a Co wire with transverse uniaxial anisotropy, is dominated by viscous slide motion in a regular magnetic stripe pattern. Analytical expressions are derived for this magnetic configuration and by using these expressions, accurate values for the depinning field and the domain wall mobility are extracted from the susceptibility measurements.
机译:使用新型的磁光克尔效应磁化方法研究了具有垂直和平面内各向异性的磁性薄膜的畴壁动力学。该方法允许在交流场激励下测量畴壁运动,并根据驱动频率和磁场振幅对动态模式进行分析。垂直各向异性系统(Co / Pt多层)中的畴壁动力学特征是热激活蠕变运动。对于这种动态模式,在较小的激发能下可得出β= 0.50±0.03的多分散指数,这与理论模型极为吻合。另一个系统的动力学,即具有横向单轴各向异性的Co线,以规则磁条模式的粘性滑动运动为主。得出该磁性构型的解析表达式,并通过使用这些表达式,从磁化率测量中提取出钉扎场和畴壁迁移率的准确值。

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