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首页> 外文期刊>Physical Review. B, Condensed Matter >Thermographic measurements of the spin Peltier effect in metal/yttrium-iron-garnet junction systems
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Thermographic measurements of the spin Peltier effect in metal/yttrium-iron-garnet junction systems

机译:金属/钇 - 铁石榴石连接系统中旋转珀耳帖效应的热量测量

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摘要

The spin Peltier effect (SPE), heat-current generation due to spin-current injection, in various metal (Pt,W, and Au single layers and Pt/Cu bilayer)/ferrimagnetic insulator [yttrium-iron-garnet (YIG)] junction systems has been investigated by means of a lock-in thermography (LIT) method. The SPE is excited by a spin current across the metal/YIG interface, which is generated by applying a charge current to the metallic layer via the spin Hall effect. The LIT method enables the thermal imaging of the SPE free from the Joule-heating contribution. Importantly, we observed spin-current-induced temperature modulation not only in the Pt/YIG and W/YIG systems, but also in the Au/YIG and Pt/Cu/YIG systems, excluding the possible contamination by anomalous Ettingshausen effects due to proximity-induced ferromagnetism near the metal/YIG interface. As demonstrated in our previous study, the SPE signals are confined only in the vicinity of the metal/YIG interface; we buttress this conclusion by reducing a spatial blur due to thermal diffusion in an infrared-emission layer on the sample surface used for the LIT measurements. We also found that the YIG-thickness dependence of the SPE is similar to that of the spin Seebeck effect measured in the same Pt/YIG sample, implying the reciprocal relation between them.
机译:旋转珀耳帖效果(SPE),由于旋转电流注入引起的热流发电,各种金属(Pt,W和Au单层和Pt / Cu双层)/亚铁磁性绝缘体[钇 - 铁石榴石(YIG)]通过锁定热处理(LIT)方法研究了结系统。通过跨越金属/ yig界面的旋转电流激发SPE,通过旋转霍尔效应将电荷电流施加到金属层来产生。 LIT方法使得SPE的热成像免于焦耳加热贡献。重要的是,我们不仅观察到旋转电流诱导的温度调制不仅在Pt / YIG和W / YIG系统中,而且在Au / Yig和Pt / Cu / Yig系统中,不包括由于近距离而通过异常宿胶的可能污染 - 诱导金属/ yig界面附近的铁磁性。如我们以前的研究中所示,SPE信号仅限于金属/ yig界面附近;我们通过在用于点亮测量的样品表面上的红外发射层中的热扩散导致的空间模糊来支撑这一结论。我们还发现,SPE的YIG厚度依赖性类似于在相同PT / YIG样品中测量的旋塞贝克效应的厚度依赖性,这意味着它们之间的往复关系。

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  • 来源
    《Physical Review. B, Condensed Matter 》 |2017年第2期| 024424.1-024424.12| 共12页
  • 作者单位

    Institute for Materials Research Tohoku University Sendai 980-8577 Japan WPI Advanced Institute for Materials Research Tohoku University Sendai 980-8577 Japan;

    Institute for Materials Research Tohoku University Sendai 980-8577 Japan Center for Spintronics Research Network Tohoku University Sendai 980-8577 Japan National Institute for Materials Science Tsukuba 305-0047 Japan PRESTO Japan Science and Technology Agency Saitama 332-0012 Japan;

    Institute for Materials Research Tohoku University Sendai 980-8577 Japan National Institute for Materials Science Tsukuba 305-0047 Japan;

    Institute for Materials Research Tohoku University Sendai 980-8577 Japan;

    Institute for Materials Research Tohoku University Sendai 980-8577 Japan WPI Advanced Institute for Materials Research Tohoku University Sendai 980-8577 Japan Center for Spintronics Research Network Tohoku University Sendai 980-8577 Japan Advanced Science Research Center Japan Atomic Energy Agency Tokai 319-1195 Japan;

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