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Topological spin liquids: Robustness under perturbations

机译:拓扑自旋液体:扰动下的鲁棒性

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摘要

We study the robustness of the paradigmatic kagome resonating valence bond (RVB) spin liquid and its orthogonal version, the quantum dimer model. The nonorthogonality of singlets in the RVB model and the induced finite length scale not only makes it difficult to analyze, but can also significantly affect its physics, such as how much noise resilience it exhibits. Surprisingly, we find that this is not the case: The amount of perturbations which the RVB spin liquid can tolerate is not affected by the finite correlation length, making the dimer model a viable model for studying RVB physics under perturbations. Remarkably, we tind that this is a universal phenomenon protected by symmetries: First, the dominant correlations in the RVB are spinon correlations, making the state robust against doping with visons. Second, reflection symmetry stabilizes the spin liquid against doping with spinons, by forbidding mixing of the initially dominant correlations with those which lead to the breakdown of topological order.
机译:我们研究了范式kagome共振价键(RVB)自旋液体及其正交形式,量子二聚体模型的鲁棒性。 RVB模型中单峰的非正交性和所诱导的有限长度尺度不仅使分析变得困难,而且还会显着影响其物理性质,例如其表现出的抗噪能力。出乎意料的是,我们发现情况并非如此:RVB自旋液体可以承受的扰动量不受有限相关长度的影响,从而使二聚体模型成为研究扰动下RVB物理学的可行模型。值得注意的是,我们希望这是一种受对称性保护的普遍现象:首先,RVB中的主要相关性是自旋子相关性,从而使该状态具有较强的抗Vison掺杂能力。第二,反射对称性通过禁止将最初的主要相关性与导致拓扑顺序分解的相关性混合在一起,从而使自旋液体稳定地免受掺杂。

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  • 来源
    《Physical review 》 |2020年第11期| 115101.1-115101.7| 共7页
  • 作者单位

    Max Planck Institute of Quantum Optics Hans-Kopfermann-Str. 1 D-85748 Garching Germany Munich Center for Quantum Science and Technology Schellingstr. 4 D-80799 München Germany;

    Department of Physics Princeton University Princeton New Jersey 08544 USA Department of Physics Harvard University Cambridge Massachusetts 02138 USA;

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