论文标题

在室温下的抗磁磁性半凯尔米族和bimerons

Antiferromagnetic Half-skyrmions and Bimerons at room temperature

论文作者

Jani, Hariom, Lin, Jheng-Cyuan, Chen, Jiahao, Harrison, Jack, Maccherozzi, Francesco, Schad, Jonathon, Prakash, Saurav, Eom, Chang-Beom, Ariando, A., Venkatesan, T., Radaelli, Paolo G.

论文摘要

为了寻求频率后技术,铁磁天空及其抗粒子在记忆中或神经形态设备中具有拓扑保护的孤子信息载体,表现出巨大的希望。然而,铁磁体中存在偶极场,限制了超小拓扑纹理的形成,当由旋转扭矩驱动时,有害的Skyrmion Hall效应已抑制了它们的实际实现。预测将证明相对论动力学,快速偏转运动和尺寸缩放的抗磁性类似物最近陷入了强烈的焦点,但是它们在天然抗铁磁系统中的实验实现尚未出现。在这里,我们演示了一个拓扑抗磁性的旋转式纹理系列,价格为$α$ -FE $ -FE $ _2 $ o $ $ _3 $ - 一个占地的氧化物绝缘子 - 用Pt Over-layer盖住。通过利用Kibble-Zurek机制的一阶类似物,我们稳定了异国情调的Merons-Antimerons(半千里)和Bimerons,可以通过磁场擦除,并通过温度循环重新生成。这些结构具有〜100 nm阶的特征大小,可以通过对交换和各向异性的精确调整进行化学控制,并具有进一步缩放的途径。在重金属过层的当前基于旋转的扭矩的驱动下,其中一些AFM纹理可能会在室温下作为低能量抗磁性旋转的主要候选者。

In the quest for post-CMOS technologies, ferromagnetic skyrmions and their anti-particles have shown great promise as topologically protected solitonic information carriers in memory-in-logic or neuromorphic devices. However, the presence of dipolar fields in ferromagnets, restricting the formation of ultra-small topological textures, and the deleterious skyrmion Hall effect when driven by spin torques have thus far inhibited their practical implementations. Antiferromagnetic analogues, which are predicted to demonstrate relativistic dynamics, fast deflection-free motion and size scaling have recently come into intense focus, but their experimental realizations in natural antiferromagnetic systems are yet to emerge. Here, we demonstrate a family of topological antiferromagnetic spin-textures in $α$-Fe$_2$O$_3$ - an earth-abundant oxide insulator - capped with a Pt over-layer. By exploiting a first-order analogue of the Kibble-Zurek mechanism, we stabilize exotic merons-antimerons (half-skyrmions), and bimerons, which can be erased by magnetic fields and re-generated by temperature cycling. These structures have characteristic sizes of the order ~100 nm that can be chemically controlled via precise tuning of the exchange and anisotropy, with pathways to further scaling. Driven by current-based spin torques from the heavy-metal over-layer, some of these AFM textures could emerge as prime candidates for low-energy antiferromagnetic spintronics at room temperature.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源