论文标题

无定形RU2SN3中的大型野外扭矩起源于固有的自旋效果

Large field-like torque in amorphous Ru2Sn3 originated from the intrinsic spin Hall effect

论文作者

Peterson, Thomas J., DC, Mahendra, Fan, Yihong, Chen, Junyang, Zhang, Delin, Li, Hongshi, Swatek, Przemyslaw, Garcia-Barriocanal, Javier, Wang, Jian-Ping

论文摘要

我们研究了磁控蛋白溅射RU2SN3(4和10 nm) /CO20FE60B20(5 nm)层状结构的温度依赖性电流驱动的自旋轨道扭矩。对于4(10 nm)胶片,通过使用第二个Harmonic的技术,分别将室温和类似野外的自旋扭矩效率测量为0.14 +-0.008(0.07 +-0.012)和-0.03 +-0.006(-0.20 +-0.009),分别用于4(10 nm)膜,用于使用第二个Harmonics,分别为4(10 nm)。与传统的旋转大厅材料与厚的磁性层连接的传统旋转大厅材料相比,相对较厚的RU2SN3(10 nm)薄膜中的大型野外扭矩是独一无二的,它们具有平面磁性各向异性,通常具有主要的阻尼状阻尼状和可忽略的野外扭矩。此外,观察到的RU2SN3(10 nm)/COFEB(5 nm)中观察到的类似室温的扭矩效率高达3倍(分别为-0.20 +-0.009和0.07 +-0.012),在50 k(-0.29 +0.014和0.014和0.009 +-0.009 +-0.009 +-0.009 +-0.09 + - 0.07 +-0.012)和30倍大。类似场的扭矩的温度依赖性显示出固有的自旋效应所产生的主要贡献,而阻尼状的扭矩显示出外在旋转厅效应,偏斜散射和侧跳的主导贡献。通过宏自旋计算,我们发现,在阶数或大于阻尼扭矩的磁场状扭矩包括磁性扭矩可以减少开关临界电流并减少垂直铁磁层的磁化过程。

We investigated temperature dependent current driven spin-orbit torques in magnetron sputtered Ru2Sn3 (4 and 10 nm) /Co20Fe60B20 (5 nm) layered structures with in-plane magnetic anisotropy. The room temperature damping-like and field-like spin torque efficiencies of the amorphous Ru2Sn3 films were measured to be 0.14 +- 0.008 (0.07 +- 0.012) and -0.03 +- 0.006 (-0.20 +- 0.009), for the 4 (10 nm) films respectively, by utilizing the second harmonic Hall technique. The large field-like torque in the relatively thicker Ru2Sn3 (10 nm) thin film is unique compared to the traditional spin Hall materials interfaced with thick magnetic layers with in-plane magnetic anisotropy which typically have dominant damping-like and negligible field-like torques. Additionally, the observed room temperature field-like torque efficiency in Ru2Sn3 (10 nm)/CoFeB (5 nm) is up to three times larger than the damping-like torque (-0.20 +- 0.009 and 0.07 +- 0.012, respectively) and thirty times larger at 50 K (-0.29 +- 0.014 and 0.009 +- 0.017, respectively). The temperature dependence of the field-like torques show dominant contributions from the intrinsic spin Hall effect while the damping-like torques show dominate contributions from the extrinsic spin Hall effects, skew scattering and side jump. Through macro-spin calculations, we found that including field-like torques on the order or larger than the damping-like torque can reduce the switching critical current and decrease magnetization procession for a perpendicular ferromagnetic layer.

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