Tunable mirror and multi-channel filter based on one-dimensional exponentially graded photonic crystals

B. Singh, P. Pandey
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引用次数: 1

Abstract

A study on the tunability of photonic and Omni-directional band gaps has been demonstrated theoretically in one-dimensional (1-D) photonic crystals having one of the layers as exponential graded index materials and other layers of constant refractive index materials. Using numerical simulations, we have investigated the effect of relative parameters of exponential graded layers on the photonic and Omni-directional band gaps in 1-D graded photonic crystals (GPCs). We observe that the number of photonic band gaps increases with increase of the layer thicknesses and their bandwidths can be controlled by the contrast between initial and final refractive index of the graded layers. Moreover, we have studied the Omni-directional band gaps in quarter-wave and latent type layer stacking arrangements. Further, we obtained the range of refractive indices and thicknesses of constituted layers at which omnidirectional band gaps occurs. Accordingly, we find that the photonic as well as Omni-directional band gaps of desired bandwidths can be obtained by selecting appropriate parameters in GPCs. Our work will be useful in design of mirrors, channel filters, Optical sensors, Omni-directional reflectors etc. and provide more design freedom for alternative photonic devices.
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基于一维指数梯度光子晶体的可调谐反射镜和多通道滤波器
从理论上证明了一维光子晶体中光子带隙和全向带隙的可调性,其中一层为指数渐变折射率材料,另一层为恒定折射率材料。利用数值模拟研究了一维梯度光子晶体(GPCs)中指数梯度层的相关参数对光子带隙和全向带隙的影响。我们观察到光子带隙的数量随层厚的增加而增加,其带宽可以通过渐变层的初始折射率和最终折射率的对比来控制。此外,我们还研究了四分之一波和潜型层的全向带隙。此外,我们还得到了发生全向带隙的折射率和层的厚度范围。因此,我们发现通过选择合适的参数可以获得理想带宽的光子和全向带隙。我们的工作将有助于设计反射镜、通道滤波器、光学传感器、全向反射器等,并为替代光子器件的设计提供更多的自由度。
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