Wang Dongyang, Yang Biao, Guo Qinghua, Zhang Ruo-Yang, Xia Lingbo, Su Xiaoqiang, Chen Wen-Jie, Han Jiaguang, Zhang Shuang, Chan C T
Department of Physics, Hong Kong University of Science and Technology, Hong Kong, China.
College of Advanced Interdisciplinary Studies, National University of Defense Technology, Changsha, China.
Light Sci Appl. 2021 Apr 15;10(1):83. doi: 10.1038/s41377-021-00523-8.
Nodal lines are degeneracies formed by crossing bands in three-dimensional momentum space. Interestingly, these degenerate lines can chain together via touching points and manifest as nodal chains. These nodal chains are usually embedded in two orthogonal planes and protected by the corresponding mirror symmetries. Here, we propose and demonstrate an in-plane nodal chain in photonics, where all chained nodal lines coexist in a single mirror plane instead of two orthogonal ones. The chain point is stabilized by the intrinsic symmetry that is specific to electromagnetic waves at the Г point of zero frequency. By adding another mirror plane, we find a nodal ring that is constructed by two higher bands and links with the in-plane nodal chain. The nodal link in momentum space exhibits non-Abelian characteristics on a CT - invariant plane, where admissible transitions of the nodal link structure are determined by generalized quaternion charges. Through near-field scanning measurements of bi-anisotropic metamaterials, we experimentally mapped out the in-plane nodal chain and nodal link in such systems.
节线是三维动量空间中能带交叉形成的简并态。有趣的是,这些简并线可以通过接触点连接在一起并表现为节链。这些节链通常嵌入在两个正交平面中,并由相应的镜面对称性保护。在此,我们提出并展示了一种光子学中的面内节链,其中所有相连的节线共存于单个镜面平面而非两个正交平面中。链点由零频率Г点处电磁波特有的本征对称性稳定。通过添加另一个镜面平面,我们发现了一个由两个高能带构成并与面内节链相连的节环。动量空间中的节连接在CT不变平面上表现出非阿贝尔特性,其中节连接结构的允许跃迁由广义四元数电荷决定。通过对双各向异性超材料的近场扫描测量,我们在实验中描绘出了此类系统中的面内节链和节连接。