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Extremely high birefringent and low loss microstructure optical waveguide: Design and analysis

机译:极高的双折射和低损耗微观结构光波导:设计与分析

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摘要

In this paper a new kind of porous core microstructure fiber is proposed and analyzed for the efficient transmission of terahertz signal. We use hexagonal type air hole instead of conventional circular air hole to produce hexagonal structure in cladding. Rectangular shaped air holes are introduced in the core to provide higher birefringence than other structures. Full vector finite element method is used to investigate the guiding characteristics of that hybrid waveguide. The numerical analysis ensures that, the proposed fiber offers extremely high birefringence of 0.075 and ultralow effective material loss of 0.045 cm(-1) simultaneously at optimum designing condition. Along with the excellent guiding characteristics this fiber exhibits very high power fraction of 47% and very low dispersion variation of 0.17 ps/THz/cm over 600 GHz frequency range. The proposed fiber can be easily fabricated by using the ongoing technology. We hope this microstructure fiber will be a good candidate in different polarization maintaining applications.
机译:本文提出了一种新型多孔核微结构纤维,并分析了太赫兹信号的有效传输。我们使用六角形空气孔而不是传统的圆形气孔,在包层中产生六边形结构。在芯中引入矩形空气孔以提供比其他结构更高的双折射。全矢量有限元方法用于研究该混合波导的引导特性。数值分析确保了,所提出的纤维在最佳设计条件下同时提供0.075的极高双折射,同时同时为0.045厘米(-1)的超低有效材料损失。随着优异的引导特性,该纤维具有47%的高功率分数,非常低的色散变化为0.17ps / thz / cm超过600GHz频率范围。通过使用持续的技术可以容易地制造所提出的纤维。我们希望这种微观结构纤维将成为不同偏振维持应用的良好候选者。

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