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Skyrmion flow near room temperature in an ultralow current density

机译:Skyrmion以极低的电流密度在室温附近流动

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The manipulation of spin textures with electric currents is an important challenge in the field of spintronics. Many attempts have been made to electrically drive magnetic domain walls in ferromagnets, yet the necessary current density remains quite high (~107?A?cm?2). A recent neutron study combining Hall effect measurements has shown that an ultralow current density of J~102?A?cm?2 can trigger the rotational and translational motion of the skyrmion lattice in MnSi, a helimagnet, within a narrow temperature range. Raising the temperature range in which skyrmions are stable and reducing the current required to drive them are therefore desirable objectives. Here we demonstrate near-room-temperature motion of skyrmions driven by electrical currents in a microdevice composed of the helimagnet FeGe, by using in-situ Lorentz transmission electron microscopy. The rotational and translational motions of skyrmion crystal begin under critical current densities far below 100?A?cm?2.. ? 2012 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:用电流操纵自旋纹理是自旋电子学领域中的重要挑战。已经进行了许多尝试来电驱动铁磁体中的磁畴壁,但是所需的电流密度仍然很高(〜107?A?cm?2)。最近一项结合霍尔效应测量的中子研究表明,J〜102?A?cm?2的超低电流密度可以在狭窄的温度范围内触发Helim的MnSi中天生离子晶格的旋转和平移运动。因此,提高天花离子稳定的温度范围并降低驱动它们的电流是理想的目标。在这里,我们使用原位洛伦兹透射电子显微镜演示了由电磁铁FeGe组成的微型设备中由电流驱动的天体离子的近室温运动。在临界电流密度远低于100?A?cm?2的临界电流密度下,Skyrmion晶体开始进行旋转和平移运动。 2012自然出版集团,麦克米伦出版社有限公司的一个部门。版权所有。

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