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The Implications of Geometric Frustration and Orbital Degeneracies on the Evolution of Magnetism in Na4Ir3O8 and alpha-NaMnO2

机译:Na4Ir3O8和α-NaMnO2中的几何挫折和轨道简并性对磁性演化的影响

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摘要

Spin-orbit intertwined order gives rise to many novel phenomena with a broad phase space spanned by the competing energy scales within a system. This dissertation synthesized and studied two such systems demonstrating different manifestations of spin-orbit interactions, originating from orbital degeneracy effects, on geometrically frustrated magnetic lattices. Firstly, strong spin-orbit coupling in the hyperkagome lattice, Na4Ir3O8, and secondly, the layered material, alpha-NaMnO2, where single-ion anisotropy and a cooperative Jahn-Teller distortion drive magnetism to the quasi-1D limit.;The magnetic ground state of the Jeff = 1/2 spin-liquid candidate, Na4Ir3O8, is explored via combined bulk magnetization, muon spin relaxation, and neutron scattering measurements. A short-range, frozen, state comprised of quasi-static moments develops below a characteristic temperature of TF = 6 K, revealing an inhomogeneous distribution of spins occupying the entirety of the sample volume. Quasi-static, short-range, spin correlations persist until at least 20 mK and differ substantially from the nominally dynamic response of a quantum spin liquid.;Much of this dissertation focuses on the second spin-orbit intertwined system, alpha-NaMnO2, where a cooperative Jahn-Teller distortion of the MnO6 octahedra arising from an orbital degeneracy in the Mn3+ cations directly affects the electronic (ferro-orbital) and magnetic (antiferromagnetic) order, which results in an intriguing study of low-dimensional magnetism. Intricacies of the structure, static magnetic order, and magnon dynamics are presented, which heavily relied on neutron scattering techniques. In particular, a longitudinally polarized bound magnon mode is characterized through the use of polarized neutron scattering.
机译:自旋轨道交织的顺序产生了许多新颖的现象,其相空间被系统内竞争的能量尺度所跨越。本论文合成并研究了两个这样的系统,这些系统在几何受挫的磁格上表现出源自轨道简并效应的自旋-轨道相互作用的不同表现形式。首先,在高kagome晶格Na4Ir3O8中有很强的自旋轨道耦合,其次是单离子各向异性和Jahn-Teller协同畸变的层状材料α-NaMnO2使磁达到准1D极限。通过结合体磁化,μ子自旋弛豫和中子散射测量,探索了Jeff = 1/2自旋液体候选物Na4Ir3O8的状态。在TF = 6 K的特征温度以下会形成由准静态矩组成的短距离冻结状态,这表明自旋分布不均匀,占据了整个样品体积。准静态,短程自旋相关性一直持续到至少20 mK,并且与量子自旋液体的名义上的动态响应大不相同。;本论文的大部分内容集中于第二个自旋轨道交织系统α-NaMnO2,其中Mn3 +阳离子的轨道简并性引起的MnO6八面体的Jahn-Teller协同畸变直接影响电子(铁轨道)和磁性(反铁磁)顺序,这引起了对低维磁性的有趣研究。提出了结构,静态磁阶和磁振动力学的复杂性,它们在很大程度上依赖于中子散射技术。特别地,通过使用极化中子散射来表征纵向极化束缚磁振子模式。

著录项

  • 作者

    Dally, Rebecca Lynn.;

  • 作者单位

    Boston College.;

  • 授予单位 Boston College.;
  • 学科 Condensed matter physics.
  • 学位 Ph.D.
  • 年度 2018
  • 页码 178 p.
  • 总页数 178
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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