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Optics design and fabrication of 3D electrically switchable hexagonal photonic crystal

机译:3D电可切换六角形光子晶体的光学设计和制造

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摘要

We demonstrate a holographic approach for easy and large-area fabrication of 3D photonic crystal (PhC) microstructures in a polymer-dispersed liquid crystal (PDLC) by applying a single top-cut hexagonal prism and a seven-beam interference system. Based on the expected photonic band gap of the photonic crystal, the prism parameters are designed and optimized. For example, a prism with a height h = 3.73 cm and a cross angle α = 66° between the side face and the base is used to fabricate 3D PhC hexagonal symmetrical structures in PDLCs. A good agreement is obtained between the theoretical calculation of the interference intensity and morphological structures. On the other hand, far-field diffraction patterns and electrical switching characteristics are also investigated.
机译:我们通过应用单个顶切六边形棱镜和七光束干涉系统演示了一种用于在聚合物分散液晶(PDLC)中轻松且大面积制造3D光子晶体(PhC)微观结构的全息方法。基于光子晶体的预期光子带隙,设计和优化棱镜参数。例如,高度为h = 3.73 cm且侧面与基座之间的交叉角为α= 66°的棱镜可用于制造PDLC中的3D PhC六角形对称结构。在干涉强度的理论计算与形态结构之间取得了很好的一致性。另一方面,还研究了远场衍射图和电开关特性。

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