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Longitudinal spin Seebeck coefficient: heat flux vs. temperature difference method

机译:纵向自旋塞贝克系数:热通量与温差法

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摘要

The determination of the longitudinal spin Seebeck effect (LSSE) coefficient is currently plagued by a large uncertainty due to the poor reproducibility of the experimental conditions used in its measurement. In this work we present a detailed analysis of two different methods used for the determination of the LSSE coefficient. We have performed LSSE experiments in different laboratories, by using different setups and employing both the temperature difference method and the heat flux method. We found that the lack of reproducibility can be mainly attributed to the thermal contact resistance between the sample and the thermal baths which generate the temperature gradient. Due to the variation of the thermal resistance, we found that the scaling of the LSSE voltage to the heat flux through the sample rather than to the temperature difference across the sample greatly reduces the uncertainty. The characteristics of a single YIG/Pt LSSE device obtained with two different setups was (1.143 ± 0.007) 10−7 Vm/W and (1.101 ± 0.015) 10−7 Vm/W with the heat flux method and (2.313 ± 0.017) 10−7 V/K and (4.956 ± 0.005) 10−7 V/K with the temperature difference method. This shows that systematic errors can be considerably reduced with the heat flux method.
机译:纵向自旋塞贝克效应(LSSE)系数的确定目前因不确定性而困扰,这是由于其测量所用实验条件的可重复性较差。在这项工作中,我们对用于确定LSSE系数的两种不同方法进行了详细分析。我们已经在不同的实验室中进行了LSSE实验,使用不同的设置,并同时采用了温差法和热通量法。我们发现重复性的缺乏主要归因于样品与产生温度梯度的热浴之间的热接触电阻。由于热阻的变化,我们发现LSSE电压的缩放比例取决于通过样品的热通量,而不是缩放到整个样品的温差,这大大降低了不确定性。通过两种不同设置获得的单个YIG / Pt LSSE器件的特性为(1.143±0.007)10 −7 Vm / W和(1.101±0.015)10 −7 Vm / W采用热通量法,(2.313±0.017)10 −7 V / K和(4.956±0.005)10 −7 V / K方法。这表明使用热通量法可以大大减少系统误差。

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