论文标题

通过单个自旋松弛计成像非连接抗铁磁纹理

Imaging non-collinear antiferromagnetic textures via single spin relaxometry

论文作者

Finco, Aurore, Haykal, Angela, Tanos, Rana, Fabre, Florentin, Chouaieb, Saddem, Akhtar, Waseem, Robert-Philip, Isabelle, Legrand, William, Ajejas, Fernando, Bouzehouane, Karim, Reyren, Nicolas, Devolder, Thibaut, Adam, Jean-Paul, Kim, Joo-Von, Cros, Vincent, Jacques, Vincent

论文摘要

抗铁磁材料是由于其快速动力学和对寄生磁场的高鲁棒性,是下一代旋转型的有前途的平台。但是,在零净磁化的此类材料中,磁顺序的纳米级成像仍然是一个主要的实验挑战。在这里,我们表明,可以通过探测它们通过镁质元素局部产生的磁噪声来成像非共线抗磁性自旋纹理。为此,我们基于钻石中的单个氮 - 胶囊(NV)缺陷,使用扫描量子传感器执行纳米级全光弛豫计。通过增加NV缺陷的自旋松弛率的增加来检测到磁噪声,从而导致其在连续激光照明下的光致发光信号的总体降低。作为概念验证,该方法的效率是通过在合成抗fiferromagnets中的各种自旋纹理(包括域壁,旋转螺旋和抗铁磁性天空敏化)中成像的效率。该成像过程可以扩展到一大批固有的抗fiferromagnets,并为研究磁化型局部旋转波模式的物理学提供了新的机会。

Antiferromagnetic materials are promising platforms for next-generation spintronics owing to their fast dynamics and high robustness against parasitic magnetic fields. However, nanoscale imaging of the magnetic order in such materials with zero net magnetization remains a major experimental challenge. Here we show that non-collinear antiferromagnetic spin textures can be imaged by probing the magnetic noise they locally produce via thermal populations of magnons. To this end, we perform nanoscale, all-optical relaxometry with a scanning quantum sensor based on a single nitrogen-vacancy (NV) defect in diamond. Magnetic noise is detected through an increase of the spin relaxation rate of the NV defect, which results in an overall reduction of its photoluminescence signal under continuous laser illumination. As a proof-of-concept, the efficiency of the method is demonstrated by imaging various spin textures in synthetic antiferromagnets, including domain walls, spin spirals and antiferromagnetic skyrmions. This imaging procedure could be extended to a large class of intrinsic antiferromagnets and opens up new opportunities for studying the physics of localized spin wave modes for magnonics.

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