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Transmission characteristics of one-dimensional photonic crystal with dielectric defect layer in near-infrared band

机译:用近红外带介电缺陷层的一维光子晶体的传输特性

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In this paper, a one-dimensional photonic crystal with dielectric defect layer was studied in near-infrared band. For photonic crystal with only one defect layer, the effects of refractive index and thickness of defect layer, photonic crystal structure and incident angle on defect mode were discussed in detail. A photonic crystal structure with two defect layers was proposed, which had two defect modes in the forbidden band. The position of the two defect modes could be regulated by adjusting the number of photon periods and the thickness of the defect layer. Based on this structure, a two-channel narrow band filter was designed. The calculation results showed that the transmittance at the two defect modes of 1310 nm and 1550 nm reached 92.16% and 95.44%, respectively, while the full width at half maximum was only 5.5 nm and 9.7 nm. The simulation of the electric field distribution in the defect mode further proved the correctness of the design results. The research results had important value in the field of optical communication.
机译:本文在近红外带中研究了具有介电缺陷层的一维光子晶体。对于仅具有一个缺陷层的光子晶体,详细讨论了缺陷层,光子晶体结构和入射角的折射率和厚度的效果。提出了一种具有两个缺陷层的光子晶体结构,在禁用带中具有两个缺陷模式。通过调节光子周期的数量和缺陷层的厚度,可以调节两个缺陷模式的位置。基于该结构,设计了双通道窄带滤波器。计算结果表明,两种缺陷模式为1310nm和1550nm的透射率分别达到92.16%和95.44%,而半最大宽度仅为5.5nm和9.7nm。缺陷模式中的电场分布的模拟进一步证明了设计结果的正确性。研究结果在光学通信领域具有重要价值。

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