【2h】

Foam as a self-assembling amorphous photonic band gap material

机译:泡沫作为自组装的非晶光子带隙材料

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摘要

We show that slightly polydisperse disordered 2D foams can be used as a self-assembled template for isotropic photonic band gap (PBG) materials for transverse electric (TE) polarization. Calculations based on in-house experimental and simulated foam structures demonstrate that, at sufficient refractive index contrast, a dry foam organization with threefold nodes and long slender Plateau borders is especially advantageous to open a large PBG. A transition from dry to wet foam structure rapidly closes the PBG mainly by formation of bigger fourfold nodes, filling the PBG with defect modes. By tuning the foam area fraction, we find an optimal quantity of dielectric material, which maximizes the PBG in experimental systems. The obtained results have a potential to be extended to 3D foams to produce a next generation of self-assembled disordered PBG materials, enabling fabrication of cheap and scalable photonic devices.
机译:我们表明,轻微的多分散无序2D泡沫可以用作横向电(TE)极化的各向同性光子带隙(PBG)材料的自组装模板。基于内部实验和模拟泡沫结构的计算表明,在足够的折射率对比下,具有三重节点和细长细长高原边界的干泡沫组织对于打开大型PBG尤其有利。从干泡沫结构到湿泡沫结构的过渡主要通过形成更大的四重节点快速关闭PBG,从而使PBG充满缺陷模式。通过调节泡沫面积分数,我们找到了最佳数量的电介质材料,该材料可以最大程度地提高实验系统中的PBG。获得的结果有可能扩展到3D泡沫,以生产下一代自组装的无序PBG材料,从而能够制造廉价且可扩展的光子器件。

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