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Magnetic Domain Wall Motion With Current Perpendicular to the Plane Spin Transfer Torque

机译:电流垂直于平面自旋传递扭矩的磁畴壁运动

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摘要

In this paper we discuss current-driven magnetic domain wall (DW) dynamics in ferromagnetic nanowires in the current-perpendicular-to-plane geometry. We show that spin transfer torque from direct spin-polarized current applied parallel to a magnetic domain wall induces DW motion in a direction independent of the current polarity. This unidirectional response of the DW to spin torque enables DW pumping - long-range DW displacement driven by alternating current. Our numerical simulations reveal that DW pumping can be resonantly amplified through excitation of internal degrees of freedom of the DW by the current. We also experimentally study the interactions of spin-torque with a domain wall. We resonantly excite high-speed motion of a domain wall trapped at a pinning site and observe velocities over 800 m/s at current densities below 10~(7) A/cm~(2).
机译:在本文中,我们讨论了在电流垂直于平面的几何结构中,铁磁纳米线中电流驱动的磁畴壁(DW)动力学。我们表明,平行于磁畴壁施加的直接自旋极化电流产生的自旋传递转矩会在与电流极性无关的方向上引起DW运动。 DW对旋转转矩的这种单向响应可实现DW抽运-由交流电驱动的远程DW位移。我们的数值模拟表明,通过电流激励DW的内部自由度,可以将DW泵浦谐振放大。我们还通过实验研究了自旋扭矩与畴壁的相互作用。我们共振地激发了在钉扎点处困住的畴壁的高速运动,并在电流密度低于10〜(7)A / cm〜(2)的情况下观察了超过800 m / s的速度。

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