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Guided current-induced skyrmion motion in 1D potential well

机译:引导电流诱导一维势阱中的Skyrmion运动

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摘要

Magnetic skyrmions are particle-like magnetization configurations which can be found in materials with broken inversion symmetry. Their topological nature allows them to circumvent around random pinning sites or impurities as they move within the magnetic layer, which makes them interesting as information carriers in memory devices. However, when the skyrmion is driven by a current, a Magnus force is generated which leads to the skyrmion moving away from the direction of the conduction electron flow. The deflection poses a serious problem to the realization of skyrmion-based devices, as it leads to skyrmion annihilation at the film edges. Here, we show that it is possible to guide the movement of the skyrmion and prevent it from annihilating by surrounding and compressing the skyrmion with strong local potential barriers. The compressed skyrmion receives higher contribution from the spin transfer torque, which results in the significant increase of the skyrmion speed.
机译:磁性天体离子是类似粒子的磁化构型,可以在具有反转反转对称性的材料中找到。它们的拓扑性质使它们能够在磁性层内移动时绕过随机的钉扎位点或杂质,从而绕开它们,这使它们作为存储设备中的信息载体而变得有趣。然而,当天体离子被电流驱动时,会产生马格努斯力,该马格努斯力导致天体离子移离传导电子流的方向。挠曲给基于天rm离子的装置的实现带来了严重的问题,因为它导致膜边缘的天rm离子an灭。在这里,我们表明可以通过围绕和压缩具有强大的局部势垒的天敌来引导天敌的运动并防止其歼灭。压缩的天敌从旋转传递扭矩中获得更高的贡献,这导致天敌的速度显着提高。

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