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Model Realization and Numerical Studies of a Three-Dimensional Bosonic Topological Insulator and Symmetry-Enriched Topological Phases

机译:三维Bosonic拓扑绝缘子和对称对称拓扑相的模型实现和数值研究

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摘要

We study a topological phase of interacting bosons in (3 + 1) dimensions that is protected by charge conservation and time-reversal symmetry. We present an explicit lattice model that realizes this phase and that can be studied in sign-free Monte Carlo simulations. The idea behind our model is to bind bosons to topological defects called hedgehogs. We determine the phase diagram of the model and identify a phase where such bound states are proliferated. In this phase, we observe a Witten effect in the bulk whereby an external monopole binds half of the elementary boson charge, which confirms that it is a bosonic topological insulator. We also study the boundary between the topological insulator and a trivial insulator. We find a surface phase diagram that includes exotic superfluids, a topologically ordered phase, and a phase with a Hall effect quantized to one-half of the value possible in a purely two-dimensional system. We also present models that realize symmetry-enriched topologically ordered phases by binding multiple hedgehogs to each boson; these phases show charge fractionalization and intrinsic topological order as well as a fractional Witten effect.
机译:我们研究了在(3 + 1)维度上相互作用的玻色子的拓扑阶段,该阶段受到电荷守恒和时间反转对称性的保护。我们提出了一个可实现此阶段的显式晶格模型,可以在无符号蒙特卡洛模拟中对其进行研究。我们模型背后的想法是将玻色子绑定到称为刺猬的拓扑缺陷上。我们确定了模型的相图,并确定了这种结合态得以扩散的阶段。在此阶段,我们观察到了整体中的维滕效应,其中一个外部单极子结合了基本玻色子电荷的一半,这证实它是一个玻色子拓扑绝缘体。我们还研究了拓扑绝缘体和琐碎绝缘体之间的边界。我们找到了一个表面相图,其中包括奇异的超流体,拓扑有序的相和霍尔效应的相,其量化为纯二维系统中可能值的一半。我们还提出了通过将多个刺猬结合到每个玻色子上来实现富含对称性的拓扑有序相的模型。这些阶段显示了电荷分级和固有的拓扑顺序以及分数维滕效应。

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