Ma Shaojie, Jia Hongwei, Bi Yangang, Ning Shangqiang, Guan Fuxin, Liu Hongchao, Wang Chenjie, Zhang Shuang
New Cornerstone Science Laboratory, Department of Physics, The University of Hong Kong, Hong Kong 999077, China.
Shanghai Engineering Research Centre of Ultra Precision Optical Manufacturing, Department of Optical Science and Engineering, School of Information Science and Technology, Fudan University, Shanghai 200433, China.
Phys Rev Lett. 2023 Jun 16;130(24):243801. doi: 10.1103/PhysRevLett.130.243801.
Owing to the chirality of Weyl nodes characterized by the first Chern number, a Weyl system supports one-way chiral zero modes under a magnetic field, which underlies the celebrated chiral anomaly. As a generalization of Weyl nodes from three-dimensional to five-dimensional physical systems, Yang monopoles are topological singularities carrying nonzero second-order Chern numbers c_{2}=±1. Here, we couple a Yang monopole with an external gauge field using an inhomogeneous Yang monopole metamaterial and experimentally demonstrate the existence of a gapless chiral zero mode, where the judiciously designed metallic helical structures and the corresponding effective antisymmetric bianisotropic terms provide the means for controlling gauge fields in a synthetic five-dimensional space. This zeroth mode is found to originate from the coupling between the second Chern singularity and a generalized 4-form gauge field-the wedge product of the magnetic field with itself. This generalization reveals intrinsic connections between physical systems of different dimensions, while a higher-dimensional system exhibits much richer supersymmetric structures in Landau level degeneracy due to the internal degrees of freedom. Our study offers the possibility of controlling electromagnetic waves by leveraging the concept of higher-order and higher-dimensional topological phenomena.
由于具有由第一陈数表征的外尔点的手征性,外尔系统在磁场下支持单向手征零模,这是著名的手征反常的基础。作为外尔点从三维物理系统到五维物理系统的推广,杨单极子是携带非零二阶陈数(c_{2}=±1)的拓扑奇点。在此,我们使用非均匀杨单极子超材料将杨单极子与外部规范场耦合,并通过实验证明了无隙手征零模的存在,其中经过精心设计的金属螺旋结构和相应的有效反对称双各向异性项提供了在合成五维空间中控制规范场的手段。发现这种零模源于第二陈奇点与广义4形式规范场(磁场与其自身的楔积)之间的耦合。这种推广揭示了不同维度物理系统之间的内在联系,而由于内部自由度,高维系统在朗道能级简并中表现出丰富得多的超对称结构。我们的研究提供了利用高阶和高维拓扑现象的概念来控制电磁波的可能性。