论文标题
使用光子时间疾病的空间均匀性的单向散射
Unidirectional scattering with spatial homogeneity using photonic time disorder
论文作者
论文摘要
光子学的时间自由度是最近的研究热点,因为它与空间轴,因果关系和开放系统特征的类比。特别是,光子晶体的时间类似物刺激了动量间隙的设计及其扩展到拓扑和非铁子光子。尽管最近的研究还揭示了鉴于空间安德森定位的时间类比,违反离散时间翻译对称性的影响,但尚未研究时间顺序和时间不相关的疾病之间的广泛中间状态。在这里,我们研究了光子时间障碍的逆设计,以实现空间均匀平台中的光学功能。通过使用因果格林为时间障碍领域的因果函数开发结构因子和顺序度量,我们演示了工程时间散射器,该时间散射器提供了具有控制散射幅度的单向散射。我们还揭示了时间域中的订单到订单过渡允许操纵散射带宽,从而激发了无谐振的时间色滤波。我们的工作将为在没有空间图案的情况下提高光学功能的方式铺平道路。
The temporal degree of freedom in photonics has been a recent research hotspot due to its analogy with spatial axes, causality, and open-system characteristics. In particular, the temporal analogues of photonic crystals have stimulated the design of momentum gaps and their extension to topological and non-Hermitian photonics. Although recent studies have also revealed the effect of broken discrete time-translational symmetry in view of the temporal analogy of spatial Anderson localization, the broad intermediate regime between time order and time uncorrelated disorder has not been examined. Here we investigate the inverse design of photonic time disorder to achieve optical functionalities in spatially homogeneous platforms. By developing the structure factor and order metric using causal Green's functions for the domain of time disorder, we demonstrate engineered time scatterer, which provides unidirectional scattering with controlled scattering amplitudes. We also reveal that the order-to-disorder transition in the time domain allows for the manipulation of scattering bandwidths, which inspires resonance-free temporal colour filtering. Our work will pave the way for advancing optical functionalities without spatial patterning.