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Tunable electro-optic photonic crystals fabricated through template directed multi-layer atomic layer deposition

机译:通过模板定向多层原子层沉积制备的可调谐电光子晶体

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We present experimental and theoretical investigations of tunable large-pore inverse opals fabricated by combining conformal films in patterned template structures with infiltrated liquid crystals. Ultra-conformal films allow opal templates to be inverted and used as scaffolding for fabricating a large-pore dielectric backbone that serves as a patterned template for electro-opticon-linear or conventional materials. Additionally, theoretical results of tunable non-close-packed inverse opals fabricated by a multi-layer atomic layer deposition process and infiltrated with lead lanthanum zirconium titanate are presented. The structural properties of the device are defined by the template, while the dynamic properties are controlled independently by the choice of electro-opticon-linear material. A variety of dielectric templates were modeled by choosing conformal coatings to define structures that exhibit either large Bragg peak tunability or width. The dynamic optical properties of the tuned large-pore and non-close-packed inverse opals are discussed and a model is presented for characterizing the controlled fabrication of optimized photonic crystal structures using multi-component conformal film deposition. Experimental measurements and modeling both indicate enhanced static and dynamic tunability to the photonic properties of infiltrated inverse templates compared to typical tunable opal-based inverse structures.
机译:我们目前通过结合图案化模板结构中的保形膜与渗透液晶制造的可调大孔反蛋白石的实验和理论研究。超保形膜允许蛋白石模板倒置并用作制造大孔介电骨架的支架,该骨架用作电光/非线性或常规材料的图案化模板。此外,还介绍了通过多层原子层沉积工艺制造并渗透有钛酸镧锆钛酸铅的可调非密排反蛋白石的理论结果。器件的结构特性由模板定义,而动态特性则通过选择电光/非线性材料来独立控制。通过选择保形涂层来建模各种介电模板,以定义表现出大布拉格峰可调性或宽度的结构。讨论了调谐的大孔和非密堆积反蛋白石的动态光学特性,并提出了一个模型,用于表征使用多组分保形膜沉积控制制造优化的光子晶体结构的过程。与典型的基于蛋白石的可调反结构相比,实验测量和建模均表明对渗透反模板光子特性的静态和动态可调性得到了增强。

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