论文标题

固有三重退化点,由手性光子晶体中的淋巴结表面界定

Intrinsic triple degeneracy point bounded by nodal surfaces in chiral photonic crystal

论文作者

Wang, Dongyang, Jia, Hongwei, Yang, Quanlong, Hu, Jing, Zhang, Z. Q., Chan, C. T.

论文摘要

在周期性系统中,通常通过空间对称性保护和分类。然而,由于电磁波的极化程度,光子系统的零频率的伽马点是固有的退化。我们在这里表明,在手性光子晶体中,这种固有的退化节点携带 +( - )2手性拓扑电荷,拓扑特征与旋转1 Weyl点相同,表现为两个线性传播带的三重退化,与代表静电溶液相交的平面带相交。这种内在的三重退化点(TDP)通常埋在散装带子中,并且从未观察到光子零频率下的拓扑电荷。在这里,通过将空间组螺钉对称性施加到手性光子晶体上,布里渊区的边界被转化为封闭伽马点的相对带电的淋巴结表面。然后,将样品表面上的紧急Fermi-Arcs迫使这些拓扑奇异性的散装带突出连接,从而揭示了嵌入的非平凡拓扑结构。

In periodic systems, band degeneracies are usually protected and classified by spatial symmetries. However, the Gamma point at zero-frequency of a photonic system is an intrinsic degeneracy due to the polarization degree of freedom of electromagnetic waves. We show here that in chiral photonic crystals, such an intrinsic degeneracy node carries +(-)2 chiral topological charge and the topological characters is the same as a spin-1 Weyl point manifested as a triple degeneracy of two linear propagating bands intersecting a flat band representing the electrostatic solution. Such an intrinsic triple degeneracy point (TDP) at Gamma is usually buried in bulk band projections and the topological charge at photonic zero-frequency has never been observed. Here, by imposing space-group screw symmetry to the chiral photonic crystal, the Brillouin zone boundary is transformed into an oppositely charged nodal surface enclosing the Gamma point. The emergent Fermi-arcs on sample surface are then forced to connect the bulk band projections of these topological singularities, revealing the embedded non-trivial topology.

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