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首页> 外文期刊>Physical Review X >Spin Seebeck Imaging of Spin-Torque Switching in Antiferromagnetic Pt / NiO Heterostructures
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Spin Seebeck Imaging of Spin-Torque Switching in Antiferromagnetic Pt / NiO Heterostructures

机译:旋转偏离旋转扭矩切换成像在反铁磁PT / NIO异质结构中的成像

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As electrical control of Néel order opens the door to reliable antiferromagnetic spintronic devices, understanding the microscopic mechanisms of antiferromagnetic switching is crucial. Spatially resolved studies are necessary to distinguish multiple nonuniform switching mechanisms; however, progress has been hindered by the lack of tabletop techniques to image the Néel order. We demonstrate spin Seebeck microscopy as a sensitive tabletop method for imaging antiferromagnetism in thin films and apply this technique to study spin-torque switching in Pt / NiO and Pt / NiO / Pt heterostructures. We establish the interfacial antiferromagnetic spin Seebeck effect in NiO as a probe of surface Néel order. By imaging before and after applying current-induced spin torque, we resolve spin domain rotation and domain wall motion. We correlate the changes in spin Seebeck images with electrical measurements of the average Néel orientation through the spin Hall magnetoresistance, confirming that we image antiferromagnetic order.
机译:由于Néel订单的电气控制打开了可靠的防铁磁性旋转器件的门,了解反铁磁切换的微观机制至关重要。空间解决的研究是必要的,以区分多种不均匀切换机制;然而,通过缺乏桌面技术来阻碍了桌子秩序的进展。我们证明了旋塞贝克显微镜作为一种敏感的桌面方法,用于在薄膜上成像反铁磁体,并应用该技术,研究Pt / NiO和Pt / NiO / Pt异质结构中的旋转扭矩切换。我们在NIO中建立界面反铁磁旋塞贝克效应作为表面Néel订单的探头。通过在施加电流诱导的旋转扭矩之前和之后进行成像,我们解析旋转域旋转和畴壁运动。我们通过旋转霍尔磁阻将旋转探测图像的变化与电测量的电气测量相关联,确认我们图像反铁磁序列。

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