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Field and bias dependence of high-frequency magnetic noise in HgO-based magnetic tunnel junctions

机译:基于HGO的磁隧道结中高频磁噪声的场和偏置依赖性

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We present room-temperature measurements of high-frequency magnetization fluctuation (mag noise) in MgO-based nanopillar magnetic tunnel junctions (MTJs) biased with a direct current (dc). In the frequency range of 1-13 GHz, double mag-noise peaks are observed for some MTJs while others only show a single mag-noise peak. The in-plane field dependence of the mag-noise peak frequency is consistent with the Kittel formula. For all MTJs measured, the bias-dependent shift in the mag-noise peak frequency has a pronounced asymmetry. In addition, we find nonmonotonic variations in peak linewidth as a function of the external in-plane magnetic field and of the dc bias current. These suggest the possible involvement of nonmacrospin modes in spin-torque-dependent thermal mag-noise generation.
机译:我们在具有直流(DC)偏置的基于MgO的纳米粒子磁隧道连接(MTJ)中的高频磁化波动(MAG噪声)的室温测量。在1-13GHz的频率范围内,对于某些MTJ,观察到双磁噪声峰值,而其他MTJS仅显示单个磁噪声峰值。磁噪声峰值频率的面内场依赖性与Kittel公式一致。对于测量的所有MTJ,磁噪声峰值频率的偏置偏移具有明显的不对称。此外,我们发现峰值线宽的非单调变化作为外部面内磁场和DC偏置电流的函数。这些建议非旋流模式可能参与旋转扭矩依赖性的热磁性磁力发电。

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