论文标题
室温自旋轨道扭矩效率在溅射的低温超导体三角洲tan中
Room temperature spin-orbit torque efficiency in sputtered low-temperature superconductor delta-TaN
论文作者
论文摘要
在寻找未来拓扑电子中应用的有前途的拓扑材料的过程中,我们通过自旋 - 刺激性的Ferromagnetic ST-FMR和旋转抽水测量值评估了高质量溅射的$δ-$δ-$δ-$δ-$δ-$δ-$δ-$δ-$δ-$δ-$δ-$δ-$δ-$Δ-$δ-$δ-$δ-$δ-$δ-$δ-$δ-从ST-FMR表征中,我们观察到磁性CO20FE60B20层的显着线宽调制归因于$δ-$ tan层产生的电荷到旋转转换。值得注意的是,由ST-FMR和自旋泵化测量结果确定的自旋扭转效率分别为$θ= $ 0.034和0.031。这些值大于$α-$ ta的两倍以上,但几乎比$β-$ ta低五倍,这可以归因于低室温的电阻率$ \ sim74μmomΩ$ cm $δ-$ tan。估计了至少$ \ sim8 $ nm的大型自旋扩散长度,与纯TA中的自旋扩散长度相当。全面的实验分析以及密度功能理论的计算,表明$δ-$ tan中明显的SOT效应的起源主要与浆果曲率的重要贡献有关,与存在Fermi水平(EF)附近的非局部非平凡电子带结构有关。通过其他详细的理论分析,我们还发现,超导$δ-$ tan阶段的同种异体,简单的六边形结构,$θ-$ tan,具有较大的浆果曲率,并且,与预期合理的电荷电导率一起,它也可以使人能够探索一代旋转式旋转的旋转式旋转,并且可以探索一流的旋转式旋转,并迅速播放了良好的旋转效果。
In the course of searching for promising topological materials for applications in future topological electronics, we evaluated spin-orbit torques (SOTs) in high-quality sputtered $δ-$TaN/Co20Fe60B20 devices through spin-torque ferromagnetic resonance ST-FMR and spin pumping measurements. From the ST-FMR characterization we observed a significant linewidth modulation in the magnetic Co20Fe60B20 layer attributed to the charge-to-spin conversion generated from the $δ-$TaN layer. Remarkably, the spin-torque efficiency determined from ST-FMR and spin pumping measurements is as large as $Θ =$ 0.034 and 0.031, respectively. These values are over two times larger than for $α-$Ta, but almost five times lower than for $β-$Ta, which can be attributed to the low room temperature electrical resistivity $\sim 74μΩ$ cm in $δ-$TaN. A large spin diffusion length of at least $\sim8$ nm is estimated, which is comparable to the spin diffusion length in pure Ta. Comprehensive experimental analysis, together with density functional theory calculations, indicates that the origin of the pronounced SOT effect in $δ-$TaN can be mostly related to a significant contribution from the Berry curvature associated with the presence of a topically nontrivial electronic band structure in the vicinity of the Fermi level (EF). Through additional detailed theoretical analysis, we also found that an isostructural allotrope of the superconducting $δ-$TaN phase, the simple hexagonal structure, $θ-$TaN, has larger Berry curvature, and that, together with expected reasonable charge conductivity, it can also be a promising candidate for exploring a generation of spin-orbit torque magnetic random access memory as cheap, temperature stable, and highly efficient spin current sources.