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首页> 外文期刊>Nanoscale >A comparative study of the domain wall motion in ferrimagnets (Fe,Co)1−x(Gd,Tb)x
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A comparative study of the domain wall motion in ferrimagnets (Fe,Co)1−x(Gd,Tb)x

机译:铁磁体(Fe,Co)1−x(Gd,Tb)x畴壁运动的比较研究

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摘要

Magnetic domain walls (DWs) in rare-earth-transition-metal (RE-TM) ferrimagnetic alloys can be used as information carriers in nonvolatile spintronic devices. Due to the rich combinations of RE-TM elements (such as CoGd, FeGd, CoTb, and FeTb in our case), it is intriguing to reveal the characteristics of DW dynamics in these wide choices of RE-TM compounds. Through a systematic study of the DW motion in thin films with different compositions of stacking order Pt(3 nm)/(Fe,Co)1−x(Gd,Tb)x(∼8 nm)/Ta(3 nm), we show that the partially compensated ferrimagnets CoGd and FeGd can exhibit a faster DW motion under various (in-plane and out-of-plane) magnetic fields driven by current-induced spin–orbit torques. In stark contrast with the fast motion of domain walls in Gd-based ferrimagnets, we find that the CoTb system exhibits much slower DW dynamics, and the FeTb system shows no motion, but evolved into a multi-domain state upon applying current pulses. Our results demonstrate that ferrimagnets CoGd and FeGd are more suitable candidates for achieving ultrafast DW motion, which could be useful for developing spintronic memory and logic devices.
机译:磁畴壁(DWs)rare-earth-transition-metal RE-TM亚铁磁性合金可以作为信息载体非易失性的自旋电子元件。的组合RE-TM元素(如CoGd、FeGd、CoTb FeTb在我们的例子中),它是有趣的揭示DW的特点在这些广泛的选择RE-TM动力学化合物。运动薄膜具有不同的成分的叠加顺序Pt(3海里)/(铁、Co) 1−x (Gd、结核病)x(∼8海里)/ Ta(3海里),我们表明,该部分补偿铁磁性材料CoGd FeGd可以表现出更快的DW运动在不同(平面及平面外)磁场current-induced旋轨道驱动扭矩。与域的快速运动形成了鲜明的对比墙在Gd-based铁磁性材料,我们发现CoTb系统展品DW动力学,慢得多FeTb系统显示没有运动,但演变成多域状态在应用电流脉冲。CoGd和FeGd更合适的候选人可以实现超快的DW运动对于发展中自旋电子记忆和逻辑设备。

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