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The Role of the Oersted Field on the Current-Driven Domain Wall Dynamics Along Wires With Square Cross Section

机译:Oersted场在电流驱动的具有正方形截面的导线的畴壁动力学中的作用

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Current-driven domain wall dynamics in long Permalloy strips with square cross section, taking into account the influence of the Oersted field and the nonadiabatic spin-torque term, are studied in this work. Depending on the size of the square cross section two types of domain wall configurations can be nucleated, transverse or Bloch-point walls. The transverse wall dynamics showed a linear relation between the wall velocity and the applied current density. Also seen for this type of wall is that its dynamic is practically unaffected by either the presence of the Oersted field or the value of the nonadiabatic parameter, and its behavior resembles the one seen in cylindrical wires as it also does not have a Walker breakdown. In the case of the Bloch-point wall there is a threshold current density in order to promote the wall movement and it also depends on the value of the nonadiabatic parameter. The effect of the Oersted field for some values of the nonadiabatic parameter is the increase of the wall's velocity and reduction of its width. For values above $10^{13} {rm Acdot m}^{-2}$ the wall transforms into complex unstable structures.
机译:在这项工作中,考虑了Oersted场和非绝热自旋转矩项的影响,研究了方形截面长坡莫合金带中电流驱动的畴壁动力学。根据正方形横截面的大小,可以将两种类型的畴壁配置成核,横向或Bloch点壁。横向壁动力学显示出壁速度和施加的电流密度之间的线性关系。对于这种类型的墙,还可以看到它的动力学几乎不受Oersted场的存在或非绝热参数值的影响,并且它的行为类似于在圆柱导线中看到的行为,因为它也没有Walker击穿。在Bloch点墙的情况下,存在一个阈值电流密度以促进墙运动,并且还取决于非绝热参数的值。 Oersted场对非绝热参数的某些值的影响是增加壁的速度并减小其宽度。对于 $ 10 ^ {13} {rm Acdot m} ^ {-2} $ 之上的值,壁将转换为复杂的不稳定结构。

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