论文标题

光子晶体中的高阶狄拉克半分化

Higher-order Dirac Semimetal in a Photonic Crystal

论文作者

Wang, Zihao, Liu, Dongjue, Teo, Hau Tian, Wang, Qiang, Xue, Haoran, Zhang, Baile

论文摘要

最近发现的高阶拓扑结构在很大程度上丰富了拓扑材料的分类。理论和实验研究揭示了表现出拓扑保护角或铰链状态的各种高阶拓扑绝缘子。最近,拓扑半学引入了高阶拓扑。到目前为止,对高阶拓扑半学的现实模型和实验验证仍然非常有限。在这里,我们设计并演示了三维光子晶体,该光子晶体实现了高阶狄拉克半学相。频带结构上的数值结果表明,设计的三维光子晶体能够托管两个四倍的零点,这是边缘处的动量空间投影,由高阶铰链状态连接。可以通过在不同k_z值下的χ(6)拓扑不变的计算来表征高阶拓扑。还提出了微波频率的实验以测量铰链状态分散。我们的工作证明了高阶狄拉克半学相的物理实现,并为探索三维光子系统中的高阶拓扑半学阶段铺平了道路。

The recent discovery of higher-order topology has largely enriched the classification of topological materials. Theoretical and experimental studies have unveiled various higher-order topological insulators that exhibit topologically protected corner or hinge states. More recently, higher-order topology has been introduced to topological semimetals. Thus far, realistic models and experimental verifications on higher-order topological semimetals are still very limited. Here, we design and demonstrate a three-dimensional photonic crystal that realizes a higher-order Dirac semimetal phase. Numerical results on the band structure show that the designed three-dimensional photonic crystal is able to host two four-fold Dirac points, the momentum-space projections of which at an edge are connected by higher-order hinge states. The higher-order topology can be characterised with the calculation of the χ(6) topological invariant at different values of k_z. An experiment at microwave frequencies is also presented to measure the hinge state dispersion. Our work demonstrates the physical realization of a higher-order Dirac semimetal phase and paves the way to exploring higher-order topological semimetals phases in three-dimensional photonic systems.

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