论文标题

电流诱导的自旋轨道磁场的动态检测:一种独立的方法

Dynamic detection of current-induced spin-orbit magnetic fields: a phase independent approach

论文作者

Chen, L., Islinger, R., Stigloher, J., Decker, M. M., Kronseder, M., Schuh, D., Bougeard, D., Weiss, D., Back, C. H.

论文摘要

当前在Ferromagnet/非磁性金属异质结构中引起的诱导的自旋轨道扭矩(SOT)开放了巨大的可能性,以设计自旋设备,以存储,处理和传输信息在简单的体系结构中。搜索有效的SOT - 设备并量化电流诱导的自旋轨道磁场(SOFS)的对称性是一项核心任务。在这里,我们报告了一种新的方法,可以通过时间分辨的磁磁化器KERR显微镜确定基于磁化动力学的SOF。由于Fe/GaAs界面处的对称性降低,由于横向限制,狭窄的Fe/GaAs(001)条带中的微波电流会产生一个oersted场以及SOFS以及SOFS,并激发了站立旋转波(SSW)模式。由于它们的对称性不同,因此SOF和Oersted Field会产生明显不同的模式模式。因此,可以通过对SSW模式的形状分析来确定SOF的大小。具体而言,这种方法在概念上与基于线形分析的先前方法不同,它是相位独立且自校准的。它可用于测量其他材料系统中当前诱导的SOF,例如铁磁金属/非磁性金属异质结构。

Current induced spin-orbit torques (SOTs) in ferromagnet/non-magnetic metal heterostructures open vast possibilities to design spintronic devices to store, process and transmit information in a simple architecture. It is a central task to search for efficient SOT-devices, and to quantify the magnitude as well as the symmetry of current-induced spin-orbit magnetic fields (SOFs). Here, we report a novel approach to determine the SOFs based on magnetization dynamics by means of time-resolved magneto-optic Kerr microscopy. A microwave current in a narrow Fe/GaAs (001) stripe generates an Oersted field as well as SOFs due to the reduced symmetry at the Fe/GaAs interface, and excites standing spin wave (SSW) modes because of the lateral confinement. Due to their different symmetries, the SOFs and the Oersted field generate distinctly different mode patterns. Thus it is possible to determine the magnitude of the SOFs from an analysis of the shape of the SSW patterns. Specifically, this method, which is conceptually different from previous approaches based on lineshape analysis, is phase independent and self-calibrated. It can be used to measure the current induced SOFs in other material systems, e.g., ferromagnetic metal/non-magnetic metal heterostructures.

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