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Ultra-Low Loss and Flat Dispersion Circular Porous Core Photonic Crystal Fiber for Terahertz Waveguiding

机译:用于太赫兹波导的超低损耗和平分散圆形多孔芯光子晶纤维

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摘要

A novel design of circular porous core photonic crystal fiber (CCPCF) is proposed and studied for Terahertz propagation with an ultra-low-loss. The effective index, effective mode area, dispersion, material and bending losses of the suggested design are studied using full vectorial finite element method. The CCPCF with high cladding air filling factor and porous core exhibits ultra-low material absorption loss of 0.022 cm(-1) at a frequency of 1.0 THz. Further, very low bending losses of 2.2x10 -18 cm(-1) can be achieved for 1.0 cm bending radius at 1.0 THz with low confinement loss of 1.37x10(-5) cm(-1). Additionally, an ultra-flat low dispersion of 0.61 +/- 0.035 ps/THz/cm can be obtained within the frequency range of 0.8-1.0 THz. Therefore, the reported CCPCF has a strong potential for transmission in the Terahertz regime.
机译:提出了一种新颖的圆形多孔芯光子晶体纤维(CCPCF)的设计,并研究了用超低损失的太赫兹繁殖。使用全矢量图有限元方法研究了建议设计的有效指标,有效模式面积,分散,材料和弯曲损耗。具有高包层空气填充因子和多孔芯的CCPCF在1.0至THz的频率下表现出0.022cm(-1)的超低材料吸收损失。此外,在1.0THz的1.0克弯曲半径为1.0克,低限制损失为1.0克,距离为1.0厘米的弯曲半径为1.37x10(-5)厘米(-1),还可以实现2.2×10 -18cm(-1)的非常低的弯曲损耗。另外,在0.8-1.0至0THz的频率范围内,可以获得0.61 +/- 0.035ps / thz / cm的超扁平低分散体。因此,报告的CCPCF在太赫兹政权中具有强大的传播潜力。

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