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首页> 外文期刊>Bulletin of the American Physical Society >APS -Annual Meeting of the APS Four Corners Section- Event - Spin-Orbit Coupled Quantum Magnetism
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APS -Annual Meeting of the APS Four Corners Section- Event - Spin-Orbit Coupled Quantum Magnetism

机译:APS-DUEAL会议APS四个角部分 - 事件 - 旋转轨道耦合量子磁力

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“Quantum magnetism” refers to magnetic phases with physical properties that are determined by strong quantum fluctuations. These include phases in which spins are long range entangled, as in the large number of theoretically predicted “Quantum Spin Liquid” (QSL) phases, from which exotic fractionalized quasi-particle excitations (spinons) are expected to arise. The QSL phases have previously been sought in “spin only” magnetic materials with isotropic interactions, and a few candidates have emerged, but an experimental “smoking gun” for the positive identification of such QSLs is still lacking. However, recently a new wave of quantum phases, including QSLs that would provide “smoking gun” experimental signatures, are being discovered in models with anisotropic interactions, which are physically realizable in materials where the spin and orbital angular momenta of the unpaired electrons are intimately linked by spin-orbit coupling (SOC). I will discuss the strong SOC pyrochlore material Yb$_2$Ti$_2$O$_7$ and show how inelastic neutron scattering was used to quantitatively determine its anisotropic interactions. This direct determination makes Yb$_2$Ti$_2$O$_7$ one of the first SOC quantum magnets with a quantitatively-known Hamiltonian, and provides a theoretical starting point for understanding its unusual dynamical properties which have long-evaded explanation in terms of conventional magnetism.
机译:“量子磁力”是指具有由强量子波动确定的物理性质的磁相。这些包括其中自旋是长距离纠缠,如在大量的理论预测的“量子自旋液体”(QSL)阶段,从该级分异国准粒子激发(spinons)预计将出现的相。该QSL阶段先前已经寻求“旋转仅”具有各向同性相互作用磁性材料,和几个候选人已经出现,但一个实验性“冒烟的枪”这样的QSLs的正面识别仍然缺乏。然而,最近的量子阶段的新风潮,包括QSLs将提供“确凿证据”实验的签名,在具有各向异性的相互作用,这是在材料物理上可实现,其中未成对电子的自旋和轨道角动量是密切模型被发现通过旋转轨道耦合(SOC)相关联。我将讨论强SOC烧绿石材料镱$ _2 $钛$ _2 $Ø$ _7 $和显示非弹性中子散射是如何被用于定量测定其各向异性相互作用。这种直接确定使得镱$ _2 $钛$ _2 $ö$ _7 $用定量知哈密顿第一SOC量子磁体中的一个,并提供了理论起点用于理解术语已经长回避说明其不寻常的动力学性质传统磁化。

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