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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Band gap splitting and average transmission lowering in ordered and disordered one-dimensional photonic structures composed by more than two materials with the same optical thickness
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Band gap splitting and average transmission lowering in ordered and disordered one-dimensional photonic structures composed by more than two materials with the same optical thickness

机译:由两种以上具有相同光学厚度的材料构成的有序无序一维光子结构中的带隙分裂和平均透射率降低

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摘要

The optical properties of photonic structures made with more than two materials are very interesting for optical filtering and lighting applications. Herein, we compared the transmission properties of one-dimensional photonic crystals made with three, four and five materials, showing that, with a photonic crystal made of t different materials, the band gap splits in t-1 bands. The same optical thickness for the different materials layers results in split photonic band gaps with the same intensity. Photonic crystals with more than two materials are simple structures that could be used for multi-feature optical filters, or that could provide feedback for multi-peak distributed feedback lasers. Furthermore, we analysed the transmission properties of ternary and quaternary random photonic structures. These materials could very interesting for light trapping in photovoltaic devices. (C) 2014 Elsevier B.V. All rights reserved.
机译:由两种以上材料制成的光子结构的光学特性对于光学过滤和照明应用非常有趣。在此,我们比较了由三种,四种和五种材料制成的一维光子晶体的透射特性,表明,由由t种不同材料制成的一维光子晶体,带隙分裂成t-1个带。不同材料层的相同光学厚度导致具有相同强度的分裂光子带隙。具有两种以上材料的光子晶体是简单的结构,可以用于多功能光学滤波器,或者可以为多峰分布式反馈激光器提供反馈。此外,我们分析了三元和四元随机光子结构的传输特性。这些材料对于光伏器件中的光捕获可能非常有趣。 (C)2014 Elsevier B.V.保留所有权利。

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