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Design and characterization of a circular sectored core cladding structured photonic crystal fiber with ultra-low EML and flattened dispersion in the THz regime

机译:具有超低EML的圆形扇形芯包层结构光子晶纤维的设计与表征,并在THZ制度中扁平分散

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A circular sectored core cladding structured photonic crystal fiber (PCF) is presented in this article, where core and cladding are sectored by few number of rectangles. The air fragments of core and cladding are constructed with circular manner that can facilitate the fabrication process. To design the porous core PCF and characterize the properties for THz wave propagation, finite element method based Comsol Multiphysics software version 5.3a is employed. It is shown that the presented design yields an ultra-low effective material loss (EML) of 0.0153 cm(-1) with very flat dispersion of +/- 0.010 (ps/THz/cm) at optimum operating frequency of 1 THz, outperforming a number of recently reported designs in the literature. Additionally, it renders comparable low confinement loss, higher core power fraction, large effective area and exhibits single-mode fiber (SMF) characteristics. Further, since only few air fragments are used in core and cladding regions in a circular fashion, the proposed PCF geometry is feasible for fabrication by using stack and draw, extrusion, 3D printing, capillary stacking, sol-gel, or any other existing fabrication technique.
机译:本文提出了一种圆形扇形芯覆层结构光子晶纤维(PCF),其中核心和包层占矩形数量的矩形。芯和包层的空气片段以圆形的方式构造,其可以促进制造过程。为了设计多孔核心PCF并表征THz波传播的性能,采用了基于有限元的COMSOL多体学软件5.3a。结果表明,所示的设计产生0.0153cm(-1)的超低有效材料损失(EML),在最佳的工作频率为1至THz的最佳工作频率下非常平坦的分散体,优于,表现优于0.0153cm(ps / thz / cm)一些最近报告的文献设计。此外,它呈现出相当的低限制损失,较高的核心电量分数,大有效面积,并且表现出单模光纤(SMF)特性。此外,由于只有少量空气碎片以圆形方式用于芯和包层区域,所以通过使用堆叠,挤出,3D印刷,毛细管堆叠,溶胶 - 凝胶或任何其他现有制造,所提出的PCF几何形状是可行的。技术。

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