Liu Bin, Lu Guang, Cui Liyong, Li Jin, Sun Feng, Liu Fen, Li Yanhui, Yang Tianlin, Du Guiqiang
Opt Express. 2017 Jun 12;25(12):13271-13277. doi: 10.1364/OE.25.013271.
We experimentally investigated near-perfect optical absorption in sandwich structures comprising a thin metallic film whose thickness is larger than the skin depth, a top dielectric layer and a truncated photonic crystal. Single and multiple near-perfect absorptions were realized by tuning the thickness of the top layer. Based on the electromagnetic field intensity distributions at the absorption wavelengths, single near-perfect absorption originated from the tunneling effect of the optical Tamm state, while multiple near-complete absorptions mainly originated from Fabry-Perot resonances. Additionally, the structures showed good one-way absorption properties. The experimental results agreed well with theoretical values. These structures may be important for the fabrication of single or multichannel perfect absorbers.
我们通过实验研究了三明治结构中的近完美光吸收,该结构由厚度大于趋肤深度的薄金属膜、顶部介电层和截断的光子晶体组成。通过调节顶层的厚度实现了单重和多重近完美吸收。基于吸收波长处的电磁场强度分布,单重近完美吸收源于光学塔姆态的隧穿效应,而多重近完全吸收主要源于法布里-珀罗共振。此外,这些结构表现出良好的单向吸收特性。实验结果与理论值吻合良好。这些结构对于单通道或多通道完美吸收器的制造可能具有重要意义。