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首页> 外文期刊>Physica, B. Condensed Matter >Domain wall dynamics and Hall effect in eddy current loop in amorphous ferromagnetic wire with small helical anisotropy
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Domain wall dynamics and Hall effect in eddy current loop in amorphous ferromagnetic wire with small helical anisotropy

机译:螺旋各向异性小的非晶铁磁丝的涡流回路中的畴壁动力学和霍尔效应

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摘要

Small helical anisotropy was induced in amorphous ferromagnetic Co _(68.2)Fe_(4.3)Si_(12.5)B_(15) wire by current annealing and simultaneous application of tensile stress and torsion. Presence of helical anisotropy was confirmed by measurement and analysis of the circular magnetic flux versus axial magnetic field hysteresis loops. These measurements also showed that a single domain wall between circular domains can be created by placing the wire in a sufficiently high inhomogeneous magnetic field generated by Helmholtz coils with opposite currents. The domain wall velocity versus axial driving field was measured. The results show that the basic dynamic properties (magnitude of the wall mobility, field interval in which linear dependencies between velocity and field are observed, accelerated increase of the velocity for higher fields) are very similar to those obtained for the domain wall between circular domains driven by a constant circular field. The Hall effect was detected in the eddy current loop generated by the moving domain wall.
机译:通过电流退火并同时施加拉伸应力和扭转,在非晶铁磁Co _(68.2)Fe_(4.3)Si_(12.5)B_(15)线中引起小的螺旋各向异性。通过测量和分析圆形磁通量与轴向磁场磁滞回线,确认了螺旋各向异性的存在。这些测量结果还表明,可以通过将导线置于亥姆霍兹线圈产生的具有相反电流的足够高的不均匀磁场中,来在圆形畴之间创建单个畴壁。测量了畴壁速度对轴向驱动场。结果表明,基本动力学特性(壁迁移率的大小,观察到速度与场之间线性相关的场间隔,较高场的速度加速增加)与圆域之间的畴壁获得的动力学特性非常相似由恒定的圆形场驱动。在由移动畴壁产生的涡流回路中检测到霍尔效应。

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