Hey Daniel, Li Enbang
School of Physics, Faculty of Engineering and Information Sciences, University of Wollongong, Wollongong, New South Wales 2522, Australia.
R Soc Open Sci. 2018 Apr 18;5(4):172447. doi: 10.1098/rsos.172447. eCollection 2018 Apr.
Photons are weak particles that do not directly couple to magnetic fields. However, it is possible to generate a photonic gauge field by breaking reciprocity such that the phase of light depends on its direction of propagation. This non-reciprocal phase indicates the presence of an effective magnetic field for the light itself. By suitable tailoring of this phase, it is possible to demonstrate quantum effects typically associated with electrons, and, as has been recently shown, non-trivial topological properties of light. This paper reviews dynamic modulation as a process for breaking the time-reversal symmetry of light and generating a synthetic gauge field, and discusses its role in topological photonics, as well as recent developments in exploring topological photonics in higher dimensions.
光子是不直接与磁场耦合的弱粒子。然而,通过打破互易性,使得光的相位取决于其传播方向,从而有可能产生一个光子规范场。这种非互易相位表明光自身存在有效磁场。通过对该相位进行适当调整,有可能展现出通常与电子相关的量子效应,并且,正如最近所表明的,还能展现光的非平凡拓扑性质。本文回顾了动态调制作为一种打破光的时间反演对称性并产生合成规范场的过程,并讨论了其在拓扑光子学中的作用,以及在探索高维拓扑光子学方面的最新进展。