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Vortex magnetic structure in circularly magnetized microwires as deduced from magneto-optical Kerr measurements

机译:从磁光克尔测量推论得出圆磁化微丝中的涡旋磁性结构

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摘要

The magneto-optic Kerr effect has been employed to determine the magnetization process and estimate the domain structure of microwires with circular magnetic anisotropy. The diameter of microwires was 8 μm, and pieces 2 cm long were selected for measurements. The analysis of the local surface longitudinal and transverse hysteresis loops has allowed us to deduce a vortex magnetic structure with axial core and circular external shell. Moreover, a bamboo-like surface domain structure is confirmed with wave length of around 10 to 15 μm and alternating chirality in adjacent circular domains. The width of the domain wall is estimated to be less than 3 μm. Finally, closure domain structures with significant helical magnetization component are observed extending up to around 1000 μm from the end of the microwire.
机译:磁光克尔效应已被用于确定磁化过程并估计具有圆形磁各向异性的微丝的畴结构。微丝的直径为8微米,选择2厘米长的线段进行测量。对局部表面纵向和横向磁滞回线的分析使我们能够推导具有轴向核和圆形外壳的涡旋磁结构。而且,确认了竹状的表面畴结构,其波长为约10至15μm,并且在相邻的圆形畴中具有交替的手性。畴壁的宽度估计小于3μm。最后,观察到具有明显螺旋磁化分量的闭合畴结构从微线的末端延伸到大约1000μm。

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