论文标题

掷骰子模型中的非热诱导特殊点和皮肤效应

Non-Hermiticity induced Exceptional Points and Skin Effect in the Dice-Haldane Model

论文作者

Sarkar, Ronika, Bandyopadhyay, Arka, Narayan, Awadhesh

论文摘要

拓扑和非热性的相互作用导致了众多系统中的多样化,令人兴奋的表现。在这项工作中,我们系统地研究了非热性在Chern绝缘haldane模型中的作用。由于存在非分散性平坦带,骰子 - 甲烷模型托有拓扑相图,具有可容纳Chern Number $ \ pm 2 $的非平凡相。我们通过两种方式将非热性引入到该模型中 - 通过平衡的非热收益和损失,以及通过朝一个方向朝着非重生跳跃跳跃。这两种类型的非热性都会引起高阶的特殊点三。我们使用相位刚度及其缩放来证实这些高阶特殊点的存在和顺序。此外,我们构建了一个相图,以识别和定位参数空间中这些特殊点的出现。非热性对有限尺寸的晶格产生了更有趣的后果。与平衡的增益和损失不同,在非重生跳跃的情况下,在周期性边界条件下,最近的邻居骰子晶状体系统可容纳复杂平面中有限的非零光谱区域。当调用开放式边界条件时,这表现为非弱​​者皮肤效应。在掷骰子晶格模型的更普遍的情况下,非铁皮皮肤效应可能是由于增益和损失或非股骨能力引起的。令人着迷的是,本征态的定位方向取决于非热性的性质和强度。我们使用状态的局部密度,逆参与比和边缘概率建立了皮肤效应的发生,并证明了其对疾病的稳健性。我们的结果将骰子 - 甲烷模型视为探索非炎性物理学的令人兴奋的平台。

The interplay of topology and non-Hermiticity has led to diverse, exciting manifestations in a plethora of systems. In this work, we systematically investigate the role of non-Hermiticity in the Chern insulating Haldane model on a dice lattice. Due to the presence of a non-dispersive flat band, the dice-Haldane model hosts a topologically rich phase diagram with the non-trivial phases accommodating Chern numbers $\pm 2$. We introduce non-Hermiticity into this model in two ways -- through balanced non-Hermitian gain and loss, and by non-reciprocal hopping in one direction. Both these types of non-Hermiticity induce higher-order exceptional points of order three. We substantiate the presence and the order of these higher-order exceptional points using the phase rigidity and its scaling. Further, we construct a phase diagram to identify and locate the occurrence of these exceptional points in the parameter space. Non-Hermiticity has yet more interesting consequences on a finite-sized lattice. Unlike for balanced gain and loss, in the case of non-reciprocal hopping, the nearest-neighbour dice lattice system under periodic boundary conditions accommodates a finite, non-zero spectral area in the complex plane. This manifests as the non-Hermitian skin effect when open boundary conditions are invoked. In the more general case of the dice-Haldane lattice model, the non-Hermitian skin effect can be caused by both gain and loss or non-reciprocity. Fascinatingly, the direction of localization of the eigenstates depends on the nature and strength of the non-Hermiticity. We establish the occurrence of the skin effect using the local density of states, inverse participation ratio and the edge probability, and demonstrate its robustness to disorder. Our results place the dice-Haldane model as an exciting platform to explore non-Hermitian physics.

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