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Observation of new plasmons in the fractional quantum Hall effect: Interplay of topological and nematic orders

机译:分数量子霍尔效应中新等离激元的观察:拓扑和向列级的相互作用

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摘要

Collective modes of exotic quantum fluids reveal underlying physical mechanisms responsible for emergent quantum states. We observe unexpected new collective modes in the fractional quantum Hall (FQH) regime: intra–Landau-level plasmons measured by resonant inelastic light scattering. The plasmons herald rotational-symmetry-breaking (nematic) phases in the second Landau level and uncover the nature of long-range translational invariance in these phases. The intricate dependence of plasmon features on filling factor provides insights on interplays between topological quantum Hall order and nematic electronic liquid crystal phases. A marked intensity minimum in the plasmon spectrum at Landau level filling factor v = 5/2 strongly suggests that this paired state, which may support non-Abelian excitations, overwhelms competing nematic phases, unveiling the robustness of the 5/2 superfluid state for small tilt angles. At v = 7/3, a sharp and strong plasmon peak that links to emerging macroscopic coherence supports the proposed model of a FQH nematic state.
机译:外来量子流体的集体模式揭示了负责出现量子态的潜在物理机制。我们在分数量子霍尔(FQH)体制中观察到了出乎意料的新的集体模式:通过共振非弹性光散射测量的内陆等离子体激元。等离子体激元预示着第二Landau层的旋转对称断裂(向列)相,并揭示了这些相中远程平移不变性的性质。等离子体激元特征对填充因子的复杂依赖性提供了有关拓扑量子霍尔阶数与向列电子液晶相之间相互作用的见解。朗道能级填充因子v = 5/2时,等离激元光谱中的显着强度极小值强烈表明,这种可能支持非阿贝尔激发的配对状态淹没了竞争向列相,揭示了5/2超流态对于小分子的鲁棒性倾斜角度。在v = 7/3时,与新兴的宏观相干性相关的尖锐而强烈的等离激元峰支持了FQH向列态的拟议模型。

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