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具有镜像对称的光子晶体中狄拉克点的出现。

The emergence of Dirac points in photonic crystals with mirror symmetry.

机构信息

Department of Physics and Institute for Advanced Study, the Hong Kong University of Science and Technology, Clear Water Bay, Hong Kong, China.

出版信息

Sci Rep. 2015 Feb 2;5:8186. doi: 10.1038/srep08186.

Abstract

We show that Dirac points can emerge in photonic crystals possessing mirror symmetry when band gap closes. The mechanism of generating Dirac points is discussed in a two-dimensional photonic square lattice, in which four Dirac points split out naturally after the touching of two bands with different parity. The emergence of such nodal points, characterized by vortex structure in momentum space, is attributed to the unavoidable band crossing protected by mirror symmetry. The Dirac nodes can be unbuckled through breaking the mirror symmetry and a photonic analog of Chern insulator can be achieved through time reversal symmetry breaking. Breaking time reversal symmetry can lead to unidirectional helical edge states and breaking mirror symmetry can reduce the band gap to amplify the finite size effect, providing ways to engineer helical edge states.

摘要

我们证明了当能带隙关闭时,具有镜像对称的光子晶体中会出现狄拉克点。在二维光子正方形晶格中讨论了产生狄拉克点的机制,其中在两条具有不同奇偶性的能带接触后,自然会分出四个狄拉克点。这些节点的出现,其特征是动量空间中的旋涡结构,归因于由镜像对称性保护的不可避免的能带交叉。通过打破镜像对称性可以解开狄拉克节点,通过打破时间反演对称性可以实现光子 Chern 绝缘体。打破时间反演对称性会导致单向螺旋边缘态,打破镜像对称性会缩小带隙以放大有限尺寸效应,为工程螺旋边缘态提供了途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/76e5/4650825/8f83c20dd956/srep08186-f1.jpg

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