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Comparison between thermal and current driven spin-transfer torque in nanopillar metallic spin valves

机译:纳米柱金属旋转阀中热驱动和电流驱动自旋转移扭矩的比较

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摘要

We investigate the relation between thermal spin-transfer torque (TSTT) and the spin-dependent Seebeck effect (SDSE), which produces a spin current when a temperature gradient is applied across a metallic ferromagnet, in nanopillar metallic spin valves. Comparing its angular dependence (aSDSE) with the angle-dependent magnetoresistance measurements on the same device, we are able to verify that a small spin heat accumulation builds up in our devices. From the SDSE measurement and the observed current driven STT switching current of 0.8 mA in our spin valve devices, it was estimated that a temperature difference of 230 K is needed to produce an equal amount of TSTT. Experiments specifically focused on investigating TSTT show a response that is dominated by overall heating of the magnetic layer. Comparing it to the current driven STT experiments we estimate that only ~10% of the response is due to TSTT. This leads us to conclude that switching dominated by TSTT requires a direct coupling to a perfect heat sink to minimize the effect of overall heating. Nevertheless the combined effect of heating, STT, and TSTT could prove useful for inducing magnetization switching when further investigated and optimized.
机译:我们研究了热旋转传递转矩(TSTT)与自旋相关塞贝克效应(SDSE)之间的关系,该效应在纳米柱状金属自旋阀中跨金属铁磁体施加温度梯度时产生自旋电流。将其角度相关性(aSDSE)与同一设备上与角度相关的磁阻测量结果进行比较,我们能够验证在我们的设备中积聚了很少的自旋热量。根据SDSE测量和在我们的自旋阀设备中观察到的电流驱动STT开关电流0.8 mA,估计需要230 K的温差才能产生相等量的TSTT。专门研究TSTT的实验表明,响应主要由磁性层的整体加热决定。将其与当前驱动的STT实验进行比较,我们估计只有约10%的响应是由TSTT引起的。这使我们得出结论,以TSTT为主的开关需要直接耦合至理想的散热器,以最大程度地降低整体加热的影响。然而,当进一步研究和优化时,加热,STT和TSTT的组合效应可证明对诱导磁化转换很有用。

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  • 来源
    《Physical review》 |2014年第10期|104411.1-104411.6|共6页
  • 作者单位

    Physics of Nanodevices, Zernike Institute for Advanced Materials, University of Groningen, Nijenborgh 4, 9747 AG Groningen, The Netherlands;

    Physics of Nanodevices, Zernike Institute for Advanced Materials, University of Groningen, Nijenborgh 4, 9747 AG Groningen, The Netherlands;

    Physics of Nanodevices, Zernike Institute for Advanced Materials, University of Groningen, Nijenborgh 4, 9747 AG Groningen, The Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 关键词

    thermoelectric and thermomagnetic effects; thermoelectric devices; magnetization reversal mechanisms;

    机译:热电和热磁效应;热电设备;磁化反转机制;

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