论文标题
在合成空间中具有有效磁通量的孤立光子平带,包括频率尺寸
Isolated Photonic Flatband with the Effective Magnetic Flux in A Synthetic Space including the Frequency Dimension
论文作者
论文摘要
光子学中平坦带的探索在根本上很重要,旨在控制光传导中潜在应用的光定位。我们在合成空间中研究了平板物理,包括光的频率轴。环谐振器阵列用于构建合成LIEB型晶格,调制相分布支持指向合成空间的局部非零有效磁通。我们发现,平带是从其他色散带中隔离的,即使在波导的组速度分散体中扰动,光仍可以定位。我们的工作指出了一条操纵沿空间维度和频率维度的波袋的定位性能的途径,这具有控制色散材料中光学信息存储的潜在影响。
The exploration of flatband in photonics is fundamentally important, aiming to control the localization of light for potential applications in optical communications. We study the flatband physics in a synthetic space including the frequency axis of light. A ring-resonator array is used to construct a synthetic Lieb-type lattice, where the modulation phase distribution supports a locally non-zero effective magnetic flux pointing into the synthetic space. We find that the flatband is isolated from other dispersive bands and the light can still be localized even with the perturbation from the group velocity dispersion of the waveguide. Our work points out a route towards manipulating the localization performance of a wavepacket of light along both the spatial dimension and the frequency dimension, which holds the potential implication for controlling the storage of optical information in dispersive materials.