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手性狄拉克微孤子在拓扑光子晶体中的惠更斯-菲涅耳电磁传输。

Unique Huygens-Fresnel electromagnetic transportation of chiral Dirac wavelet in topological photonic crystal.

机构信息

Research Center for Materials Nanoarchitectonics (MANA), National Institute for Materials Science (NIMS), Tsukuba, 305-0044, Japan.

Graduate School of Science and Technology, University of Tsukuba, Tsukuba, 305-8571, Japan.

出版信息

Nat Commun. 2023 Jun 2;14(1):3040. doi: 10.1038/s41467-023-38325-8.

Abstract

Light propagates in various ways depending on environment, including uniform medium, surface/interface and photonic crystals, which appears ubiquitously in daily life and has been exploited for advanced optics technology. We unveiled that a topological photonic crystal exhibits unique electromagnetic (EM) transport properties originating from the Dirac frequency dispersion and multicomponent spinor eigenmodes. Measuring precisely local Poynting vectors in microstrips of honeycomb structure where optics topology emerges upon a band gap opening in the Dirac dispersion and a p-d band inversion induced by a Kekulé-type distortion respecting C symmetry, we showed that a chiral wavelet induces a global EM transportation circulating in the direction counter to the source, which is intimately related to the topological band gap specified by a negative Dirac mass. This brand-new Huygens-Fresnel phenomenon can be considered as the counterpart of negative refraction of EM plane waves associated with upwardly convex dispersions of photonic crystals, and our present finding is expected to open a new window for photonic innovations.

摘要

光在不同的环境中以不同的方式传播,包括均匀介质、表面/界面和光子晶体,这些在日常生活中无处不在,并被用于先进的光学技术。我们揭示了拓扑光子晶体表现出独特的电磁(EM)输运性质,这源于狄拉克频率色散和多分量旋量本征模式。在具有狄拉克色散带隙和由 Kekulé 型扭曲引起的 p-d 带反转的正六边形结构微带中精确测量局部坡印廷矢量,我们表明手性波导致在与源相反的方向上全局 EM 输运,这与由负狄拉克质量指定的拓扑带隙密切相关。这种全新的惠更斯-菲涅耳现象可以被视为与光子晶体的向上凸色散相关的 EM 平面波的负折射的对应物,我们目前的发现有望为光子创新开辟新的窗口。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/65d2/10238500/355887a06219/41467_2023_38325_Fig1_HTML.jpg

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