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Infiltration of E7 Liquid Crystal in a Nanoparticle-Based Multilayer Photonic Crystal: Fabrication and Electro-optical Characterization

机译:基于纳米粒子的多层光子晶体中E7液晶的渗透:制备和电光学表征

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摘要

In this study, we propose the fabrication and the electro-optical characterization of nanoparticle-based multilayer photonic crystals infiltrated with a nematic liquid crystal. Two methods of the photonics band gap tunability have been proposed. In the first, we have observed an aligning of the liquid crystal director along the external electric field vector at very low applied voltage, with a blue shift of the photonic band gap of 8 nm at only 8 V_(rms). In the second, we put forward the possibility of tuning the photonic band gap of the porous multilayer just by infiltration of appropriate liquid crystals, in accordance with results carried out by a custom simulation software. The presented device could be very interesting for applications where high sensitivity sensor and selective color tunability is needed with the use of cheap and low-voltage power supplies.
机译:在这项研究中,我们提出了向列液晶渗透的基于纳米粒子的多层光子晶体的制备和电光表征。已经提出了两种光子学带隙可调性的方法。首先,我们观察到液晶指向矢在非常低的施加电压下沿着外部电场矢量排列,仅在8 V_(rms)时光子带隙的蓝移为8 nm。在第二篇中,我们提出了根据定制模拟软件执行的结果,仅通过适当液晶的渗透来调节多孔多层的光子带隙的可能性。对于需要通过使用廉价的低压电源来提供高灵敏度传感器和选择性色彩可调性的应用,该设备可能会非常有趣。

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