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Combining Spin-Seebeck and Nernst Effects in Aligned MnBi/Bi Composites

机译:将Spin-Seebeck和NERNST效应组合在对齐的MNBI / BI复合材料中

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The spin-Seebeck effect (SSE) is an advective transport process traditionally studied in bilayers composed of a ferromagnet (FM) and a non-magnetic metal (NM) with strong spin-orbit coupling. In a temperature gradient, the flux of magnons in the FM transfers spin-angular momentum to electrons in the NM, which by the inverse spin-Hall effect generates an SSE voltage. In contrast, the Nernst effect is a bulk transport phenomenon in homogeneous NMs or FMs. These effects share the same geometry, and we show here that they can be added to each other in a new combination of FM/NM composites where synthesis via in-field annealing results in the FM material (MnBi) forming aligned needles inside an NM matrix with strong spin-orbit coupling (SOC) (Bi). Through examination of the materials’ microstructural, magnetic, and transport properties, we searched for signs of enhanced transverse thermopower facilitated by an SSE contribution from MnBi adding to the Nernst effect in Bi. Our results indicate that these two signals are additive in samples with lower MnBi concentrations, suggesting a new way forward in the study of SSE composite materials.
机译:Spin-Seebeck效应(SSE)是一种平流的传输过程,其传统上由具有强大的旋转轨道耦合的铁磁性(FM)和非磁性金属(NM)组成的双层。在温度梯度中,FM中的振值的磁通量将旋转角动量转移到NM中的电子,其通过逆旋转霍尔效应产生SSE电压。相比之下,人道主义效应是均匀NMS或FMS中的散装传输现象。这些效果共享相同的几何形状,并且在这里,我们在这里展示它们可以在FM / NM复合材料的新组合中彼此添加,其中通过现场退火的合成产生FM材料(MnBi)在NM矩阵内形成对准的针头具有强大的旋转轨道耦合(SOC)(BI)。通过检查材料的微观结构,磁性和运输特性,我们搜索了由MNBI的SSE贡献增加了增强横向热电机的迹象,从MNBI增加到BI中的NERNST效果。我们的结果表明,这两种信号在具有较低MnBi浓度的样品中是添加剂,表明SSE复合材料研究中的一种新的前进方式。

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