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Spin transport and magnetization dynamics in various magnetic systems.

机译:各种磁性系统中的自旋输运和磁化动力学。

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摘要

The general theme of the thesis is the interplay between magnetization dynamics and spin transport. The main presentation is divided into three parts.;The first part is devoted to deepening our understanding on magnetic damping of ferromagnetic metals, which is one of the long-standing issues in conventional spintronics that has not been completely understood. For a nonuniformly-magnetized ferromagnetic metal, we find that the damping is nonlocal and is enhanced as compared to that in the uniform case. It is therefore necessary to generalize the conventional Landau-Lifshitz-Gilbert equation to include the additional damping. In a different vein, the decay mechanism of the uniform precession mode has been investigated. We point out the important role of spin-conserving electron-magnon interaction in the relaxation process by quantitatively examining its contribution to the ferromagnetic resonance linewidth.;In the second part, a transport theory is developed for magnons which, in addition to conduction electrons, can also carry and propagate spin angular momentum via the magnon current. We demonstrate that the mutual conversion of magnon current and spin current may take place at magnetic interfaces. We also predict a novel magnon-mediated electric drag effect in a metal/magnetic-insulator/metal trilayer structure. This study may pave the way to the new area of insulator-based spintronics.;In the third part of thesis, particular attention is paid to the influence the spin orbit coupling on both charge and spin transport. We theoretically investigate magnetotransport anisotropy and the conversion relations of spin and charge currents in various magnetic systems, and apply our results to interpret recent experiments.
机译:论文的总体主题是磁化动力学与自旋输运之间的相互作用。主要内容分为三个部分:第一部分致力于加深我们对铁磁性金属的磁阻尼的理解,这是传统自旋电子学中一个长期存在的问题,尚未得到完全理解。对于非均匀磁化的铁磁金属,我们发现阻尼是非局部的,并且与均匀情况下的阻尼相比有所增强。因此,有必要推广常规的Landau-Lifshitz-Gilbert方程,使其包括附加阻尼。在不同的方面,已经研究了均匀进动模式的衰减机理。通过定量研究其对铁磁共振线宽的贡献,我们指出了自旋保持电子-马农相互作用在弛豫过程中的重要作用。第二部分,研究了除传导电子外,还对马农进行了输运理论。磁通电流还可以携带和传播自旋角动量。我们证明了磁流和自旋电流的相互转换可能发生在磁性界面上。我们还预测了在金属/磁绝缘体/金属三层结构中的新型磁振子介导的电阻力效应。这项研究可能会为基于绝缘子的自旋电子学的新领域铺平道路。在论文的第三部分,要特别注意自旋轨道耦合对电荷和自旋输运的影响。我们在理论上研究了各种磁性系统中的磁传输各向异性以及自旋和电荷电流的转换关系,并将我们的结果用于解释最近的实验。

著录项

  • 作者

    Zhang, Shulei.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Condensed matter physics.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 143 p.
  • 总页数 143
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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