首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Broadening and tuning of omni-directional reflection gap in a 1D photonic crystal consisting semiconducting constituents
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Broadening and tuning of omni-directional reflection gap in a 1D photonic crystal consisting semiconducting constituents

机译:包含半导体成分的一维光子晶体中全向反射间隙的展宽和调谐

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摘要

The effect of temperature on omni-directional gap (ODG) in a dispersive one-dimensional photonic crystal has been investigated simultaneously considering thermal expansion effect and thermo-optic effect. The proposed structure consists of a periodic array of alternate layers of ZnS and Ge respectively, as the materials of low and high refractive index materials. The refractive index of both layers is taken as a function of temperature and wavelength both. The effect of temperature on ODR band and the central wavelength of this ODR have been studied. This ODR can be tuned by varying the temperature of the geometry. The propagation characteristics of the proposed structure are analyzed by the transfer matrix method. (C) 2015 Elsevier GmbH. All rights reserved.
机译:同时考虑了热膨胀效应和热光效应,研究了温度对色散一维光子晶体中全向间隙(ODG)的影响。所提出的结构由分别作为低折射率和高折射率材料的ZnS和Ge交替层的周期性阵列组成。这两层的折射率均作为温度和波长的函数。研究了温度对ODR波段和该ODR中心波长的影响。可以通过改变几何形状的温度来调整此ODR。通过传递矩阵法分析了所提出结构的传播特性。 (C)2015 Elsevier GmbH。版权所有。

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