论文标题

具有单个自旋磁力计的非连线性抗铁磁顺序的真实空间成像

Real-space imaging of non-collinear antiferromagnetic order with a single spin magnetometer

论文作者

Gross, I., Akhtar, W., Garcia, V., Martínez, L. J., Chouaieb, S., Garcia, K., Carrétéro, C., Barthélémy, A., Appel, P., Maletinsky, P., Kim, J. -V., Chauleau, J. Y., Jaouen, N., Viret, M., Bibes, M., Fusil, S., Jacques, V.

论文摘要

虽然铁磁铁是日常生活应用的核心,但它们的大量磁化和切换的能源成本使他们对可靠的低功耗自旋设备的适用性。非共线性抗铁磁系统不会遭受此问题的困扰,并且通常具有显着的额外功能:非连续性旋转顺序可能会破坏空间内的对称性,从而允许对磁性的电场控制或产生新兴的自旋轨道效应,从而启用有效的旋转式递送互连。为了利用这些独特的特征,用于下一代旋转,现在必须针对抗铁磁系统开发现在的纳米级控制和成像功能。在这里,使用钻石中的单个氮 - 胶囊(NV)缺陷,使用非侵入性扫描纳米磁性计,我们在室温下证明了在磁性薄膜中非连续性抗抗磁性序列的第一个真实空间可视化。我们对多效Bifeo $ _3 $薄膜的自旋旋转型形象,并提取$ \ sim70 $ nm的周期,与宏观衍射确定的值一致。此外,我们利用Bifeo $ _3 $中存在的磁电耦合来通过电场来操纵环形传播方向。除了突出纳米级的NV磁力测定法对复杂的抗铁磁订单的成像外,这些结果还证明了Bifeo $ _3 $如何用作设计可重新配置的纳米级旋转纹理的多功能平台。

While ferromagnets are at the heart of daily life applications, their large magnetization and resulting energy cost for switching bring into question their suitability for reliable low-power spintronic devices. Non-collinear antiferromagnetic systems do not suffer from this problem and often possess remarkable extra functionalities: non-collinear spin order may break space-inversion symmetry and thus allow electric-field control of magnetism, or produce emergent spin-orbit effects, which enable efficient spin-charge interconversion. To harness these unique traits for next-generation spintronics, the nanoscale control and imaging capabilities that are now routine for ferromagnets must be developed for antiferromagnetic systems. Here, using a non-invasive scanning nanomagnetometer based on a single nitrogen-vacancy (NV) defect in diamond, we demonstrate the first real-space visualization of non-collinear antiferromagnetic order in a magnetic thin film, at room temperature. We image the spin cycloid of a multiferroic BiFeO$_3$ thin film and extract a period of $\sim70$ nm, consistent with values determined by macroscopic diffraction. In addition, we take advantage of the magnetoelectric coupling present in BiFeO$_3$ to manipulate the cycloid propagation direction by an electric field. Besides highlighting the unique potential of NV magnetometry for imaging complex antiferromagnetic orders at the nanoscale, these results demonstrate how BiFeO$_3$ can be used as a versatile platform for the design of reconfigurable nanoscale spin textures.

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