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Reconstruction of an effective magnon mean free path distribution from spin Seebeck measurements in thin films

机译:通过薄膜自旋塞贝克测量重建有效的磁振子平均自由程分布

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A thorough understanding of the mean-free-path (MFP) distribution of the energy carriers is crucial to engineer and tune the transport properties of materials. In this context, a significant body of work has investigated the phonon and electron MFP distribution, however, similar studies of the magnon MFP distribution have not been carried out so far. In this work, we used thickness-dependence measurements of the longitudinal spin Seebeck (LSSE) effect of yttrium iron garnet films to reconstruct the cumulative distribution of a SSE related effective magnon MFP. By using the experimental data reported by (Guo et al 2016 Phys. Rev. X 6 031012), we adapted the phonon MFP reconstruction algorithm proposed by (Minnich 2012 Phys. Rev. Lett. 109 205901) and apply it to magnons. The reconstruction showed that magnons with different MFP contribute in different manner to the total LSSE and the effective magnon MFP distribution spreads far beyond their typical averaged values.
机译:彻底理解能量载体的平均自由程(MFP)分布对于设计和调整材料的传输特性至关重要。在这种情况下,大量的工作已经研究了声子和电子MFP的分布,但是,到目前为止,尚未对磁子MFP的分布进行类似的研究。在这项工作中,我们使用钇铁石榴石薄膜的纵向自旋塞贝克(LSSE)效应的厚度依赖性测量来重建SSE相关有效磁振子MFP的累积分布。通过使用(Guo et al 2016 Phys.Rev.X 6 031012)报告的实验数据,我们采用了(Minnich 2012 Phys.Rev.Lett.109 205901)提出的声子MFP重建算法,并将其应用于磁振子。重建结果表明,具有不同MFP的磁振子对总LSSE的贡献方式不同,并且有效的MFP分布范围远远超出其典型平均值。

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