Wang Dongyang, Yang Biao, Zhang Ruo-Yang, Chen Wen-Jie, Zhang Z Q, 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 410073, China.
Phys Rev Lett. 2022 Jul 22;129(4):043602. doi: 10.1103/PhysRevLett.129.043602.
In periodic systems, nodal lines are loops in the three-dimensional momentum space with each point on them representing a band degeneracy. Nodal lines exhibit rich topological features, as they can take various configurations such as rings, links, chains, and knots. These line nodes are generally protected by mirror or PT symmetry and frequently accompanied by drumhead surface states. Here, we propose and demonstrate a novel type of photonic straight nodal lines in a D_{2D} metacrystal, which are protected by an unusual rotoinversion time (roto-PT) symmetry. These nodal lines are located at the central axis and hinges of the Brillouin zone. They appear as quadrupole sources of Berry curvature flux in contrast to the Weyl points, which are monopoles. Interestingly, topological surface states exist at all three cutting surfaces, as guaranteed by π-quantized Zak phases along all three directions. As frequency changes, the surface state equifrequency contours evolve from closed to open and become straight lines at a critical transition frequency, at which diffractionless surface wave propagations are experimentally demonstrated, paving the way toward development of superimaging topological devices.
在周期系统中,节线是三维动量空间中的回路,其上的每个点都表示能带简并。节线展现出丰富的拓扑特征,因为它们可以呈现各种形态,如环、链环、链条和纽结。这些线节点通常由镜面对称或PT对称保护,并且常常伴随着鼓面表面态。在此,我们提出并展示了一种在D_{2D}超晶胞中的新型光子直节线,其由一种不寻常的旋转反演时间(旋转PT)对称保护。这些节线位于布里渊区的中心轴和棱上。与作为单极子的外尔点不同,它们表现为贝里曲率通量的四极源。有趣的是,由于沿所有三个方向的π量化扎克相的保证,在所有三个切割面上都存在拓扑表面态。随着频率变化,表面态等频率轮廓从封闭演变为开放,并在一个临界转变频率处变为直线,在该频率处通过实验证明了无衍射表面波传播,为超成像拓扑器件的发展铺平了道路。