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Effect of Electric Current on Domain Wall Dynamics

机译:电流对畴壁动力学的影响

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In this paper, we determine the domain wall velocity in the low field regime and study the domain wall dynamics in Joule-annealed amorphous glass-covered microwires with positive magnetostriction. Such microwires are known to present magnetic bi-stability when axially magnetized. In order to measure the domain wall dynamics, an electrical current was applied to the wire simultaneously to the driving magnetic field. When the dc current is applied to the sample, an increase or a decrease is observed on the axial domain wall velocity, depending on the current direction. These results are explained in terms of the change in the magnetic energy promoted by the additional Oersted field which, by its time, modifies the length of the conical domain wall, in such a way that the orthogonal domain wall velocity is not changed by the applied current.
机译:在本文中,我们确定低场条件下的畴壁速度,并研究具有正磁致伸缩的焦耳退火非晶玻璃覆盖微线的畴壁动力学。已知这样的微线在轴向磁化时表现出磁双稳定性。为了测量畴壁动力学,将电流同时施加到导线上并施加到驱动磁场。当将直流电流施加到样品上时,根据电流方向,轴向畴壁速度会增加或减少。这些结果是通过附加的Oersted磁场促进的磁能变化来解释的,该磁场会随着时间的变化而改变圆锥形畴壁的长度,从而使正交畴壁的速度不会因所施加的磁场而改变。当前。

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