论文标题

非热晶体中受对称保护的拓扑特殊链

Symmetry-protected topological exceptional chains in non-Hermitian crystals

论文作者

Zhang, Ruo-Yang, Cui, Xiaohan, Chen, Wen-Jie, Zhang, Zhao-Qing, Chan, C. T.

论文摘要

在非热系统系统中,在没有任何对称性的情况下,有缺陷的带退化(EPS)可以在3D动量空间中形成强大的特殊线(ELS)。在这里,我们表明,可以根据周围的特征力编织的特征力分配自然取向,并证明EL的无源原理是普遍的fermion fermion的必然原则,将EPS在任意封闭的方面上加倍的定理增加了一倍,这表明如果几个ELS流入了一个相同的Extly,则必须从相同的ELFLOFE中汇出。基于此原理,我们发现了三种可以稳定EL的交界的机制,因此保证在保护镜,镜像 - 接合点或$ {c} _2 \ Mathcal {t} $ symmeties下的保护下形成了各种类型的特殊链(EC)。此外,我们将无阈值扰动分析到遗传学淋巴结线,并绘制出可以进化的所有可能的EC配置。通过战略性地设计结构和材料,我们进一步表明,可以在非热光子晶体中轻易观察到这些外来的EC。我们的结果直接表明了空间对称性和拓扑对非富尔米特奇异性的综合作用,并为操纵非铁质晶体系统中EL的形态铺平了道路。

In non-Hermitian systems, the defective band degeneracies, so-called exceptional points (EPs), can form robust exceptional lines (ELs) in 3D momentum space in the absence of any symmetries. Here, we show that a natural orientation can be assigned to every EL according to the eigenenergy braiding around it, and prove the source-free principle of ELs as a corollary of the generalized Fermion doubling theorem for EPs on an arbitrary closed oriented surface, which indicates that if several ELs flow into a junction, the same number of outflow ELs from the junction must exist. Based on this principle, we discover three different mechanisms that can stabilize the junction of ELs and therefore guarantee the formation of various types of exceptional chains (ECs) under the protection of mirror, mirror-adjoint, or ${C}_2\mathcal{T}$ symmetries. Furthermore, we analyze the thresholdless perturbations to a Hermitian nodal line and map out all possible EC configurations that can be evolved. By strategically designing the structure and materials, we further exhibit that these exotic ECs can be readily observed in non-Hermitian photonic crystals. Our results directly manifest the combined effect of spatial symmetry and topology on the non-Hermitian singularities and pave the way for manipulating the morphology of ELs in non-Hermitian crystalline systems.

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