论文标题
通过退化腔中的扭曲光子拓扑结构
Topological band structure via twisted photons in a degenerate cavity
论文作者
论文摘要
基于粒子内部自由度(例如频率,空间模式和到达时间)的合成维度引起了极大的关注。他们提供理想的大规模晶格来模拟非平凡的拓扑现象。探索更多的合成维度是通往更高维物理学的途径之一。在这项工作中,我们设计并通过实验控制了由固有光子轨道角动量组成的合成尺寸之间的耦合,并在退化的光谐振腔中旋转角度动量自由度,从而产生了定期驱动的旋转旋转旋转耦合系统。我们通过传输强度测量值直接表征了系统的性质,包括状态,能带结构和拓扑绕组的密度。我们的工作展示了一种新型机制,用于探索扭曲光子的空间模式作为合成维度,该尺寸为在高度紧凑的平台中设计丰富的拓扑物理铺平了道路。
Synthetic dimensions based on particles' internal degrees of freedom, such as frequency, spatial modes and arrival time, have attracted significant attention. They offer ideal large-scale lattices to simulate nontrivial topological phenomena. Exploring more synthetic dimensions is one of the paths toward higher dimensional physics. In this work, we design and experimentally control the coupling among synthetic dimensions consisting of the intrinsic photonic orbital angular momentum and spin angular momentum degrees of freedom in a degenerate optical resonant cavity, which generates a periodically driven spin-orbital coupling system. We directly characterize the system's properties, including the density of states, energy band structures and topological windings, through the transmission intensity measurements. Our work demonstrates a novel mechanism for exploring the spatial modes of twisted photons as the synthetic dimension, which paves the way to design rich topological physics in a highly compact platform.