论文标题

共鸣纳米光晶格的奇异状态

Singular states of resonant nanophotonic lattices

论文作者

Ko, Y. H., Lee, K. J., Simlan, F. A., Magnusson, R.

论文摘要

介绍了集中在奇异状态及其特性的纳米光共振系统中的基本影响。与晶格的几何形状和材料组成密切相关,在光谱中出现谐振的明亮通道和非谐音的暗通道。明亮的状态对应于高反射率引导模式共振(GMR),而暗通道代表连续体(BIC)中的结合状态。即使在简单的系统中,具有可调带宽的奇异状态也似乎是孤立的光谱线条,这些光谱线与其他共振特征广泛分开。在适度的晶格调制下,随之而来的是泄漏的频带变态,合并了模态频段并导致偏移黑色状态和反射性BIC以及在高反射宽带内的传播BIC。 Rytov型有效培养基理论(EMT)被证明是描述,制定和理解共振光子系统中的集体GMR/BIC基本面的强大手段。特别是,此处显示的不对称场的丢弃的RYTOV分析解决方案基本上可以预测深色BIC状态,这基本上是用于相当大的调制水平。等效EMT均匀膜的传播常数提供了对经常引用的嵌入BIC特征值的定量评估。这项工作以实验验证关键影响结束。

Fundamental effects in nanophotonic resonance systems focused on singular states and their properties are presented. Strongly related to lattice geometry and material composition, there appear resonant bright channels and non-resonant dark channels in the spectra. The bright state corresponds to high reflectivity guided-mode resonance (GMR) whereas the dark channel represents a bound state in the continuum (BIC). Even in simple systems, singular states with tunable bandwidth appear as isolated spectral lines that are widely separated from other resonance features. Under moderate lattice modulation, there ensues leaky-band metamorphosis, merging modal bands and resulting in offset dark states and reflective BICs along with transmissive BICs within a high-reflectance wideband. Rytov-type effective medium theory (EMT) is shown to be a powerful means to describe, formulate, and understand the collective GMR/BIC fundamentals in resonant photonic systems. Particularly, the discarded Rytov analytical solution for asymmetric fields is shown here to predict the dark BIC states essentially exactly for considerable modulation levels. The propagation constant of an equivalent EMT homogeneous film provides a quantitative evaluation of the eminent, oft-cited embedded BIC eigenvalue. The work concludes with experimental verification of key effects.

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