论文标题
对一个,两个和三个维度中拓扑光子学的简要回顾
A brief review of topological photonics in one, two, and three dimensions
论文作者
论文摘要
近年来,由于它提供的独特机会以一种可靠的疾病和缺陷来操纵光线,拓扑光子学引起了越来越多的关注。到目前为止,已经提出了多种光子平台,丰富的物理机制和富有成果的设备应用,包括单向波导,拓扑激光,拓扑纳米腔,dirac和weyl点,费米弧,节点,节点等。尺寸不仅可能提供了对光的不同和独特的拓扑现象的潜在鲁棒性的统一理解,而且还可以通过引入新的拓扑不变式和非常规的散装构成对应,以激发进一步的发展。
Topological photonics has attracted increasing attention in recent years due to the unique opportunities it provides to manipulate light in a robust way immune to disorder and defects. Up to now, diverse photonic platforms, rich physical mechanisms and fruitful device applications have been proposed for topological photonics, including one-way waveguide, topological lasing, topological nanocavity, Dirac and Weyl points, Fermi arcs, nodal lines, etc. In this review, we provide an introduction to the field of topological photonics through the lens of topological invariants and bulk-boundary correspondence in one, two, and three dimensions, which may not only offer a unified understanding about the underlying robustness of diverse and distinct topological phenomena of light, but could also inspire further developments by introducing new topological invariants and unconventional bulk-boundary correspondence to the research of topological photonics.