Gao Wenlong, Yang Biao, Tremain Ben, Liu Hongchao, Guo Qinghua, Xia Lingbo, Hibbins Alastair P, Zhang Shuang
School of Physics and Astronomy, University of Birmingham, Birmingham, B15 2TT, UK.
Department of Physics and Astronomy, Electromagnetic and Acoustic Materials Group, University of Exeter, Stocker Road, Exeter, EX4 4QL, UK.
Nat Commun. 2018 Mar 5;9(1):950. doi: 10.1038/s41467-018-03407-5.
Nodal line semimetals (NLS) are three-dimensional (3D) crystals that support band crossings in the form of one-dimensional rings in the Brillouin zone. In the presence of spin-orbit coupling or lowered crystal symmetry, NLS may transform into Dirac semimetals, Weyl semimetals, or 3D topological insulators. In the photonics context, despite the realization of topological phases, such as Chern insulators, topological insulators, Weyl, and Dirac degeneracies, no experimental demonstration of photonic nodal lines (NLs) has been reported so far. Here, we experimentally demonstrate NL degeneracies in microwave cut-wire metacrystals with engineered negative bulk plasma dispersion. Both the bulk and surface states of the NL metamaterial are observed through spatial Fourier transformations of the scanned near-field distributions. Furthermore, we theoretically show that the NL degeneracy can transform into two Weyl points when gyroelectric materials are incorporated into the metacrystal design. Our findings may inspire further advances in topological photonics.
节线半金属(NLS)是三维(3D)晶体,其在布里渊区以一维环的形式支持能带交叉。在存在自旋轨道耦合或晶体对称性降低的情况下,NLS可能转变为狄拉克半金属、外尔半金属或三维拓扑绝缘体。在光子学领域,尽管已经实现了拓扑相,如陈绝缘体、拓扑绝缘体、外尔和狄拉克简并,但迄今为止尚未有光子节线(NL)的实验证明。在此,我们通过具有工程化负体等离子体色散的微波切割线超晶体验证了NL简并。通过扫描近场分布的空间傅里叶变换观察到了NL超材料的体态和表面态。此外,我们从理论上表明,当将旋电材料纳入超晶体设计时,NL简并可以转变为两个外尔点。我们的发现可能会推动拓扑光子学的进一步发展。