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Ultra-low loss THz waveguide with flat EML and near zero flat dispersion properties

机译:具有平坦EML和接近零平坦色散特性的超低损耗THz波导

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This paper represents an ultra-low loss waveguide with flat effective material loss (EML) and near zero dispersion flattened properties suitable for THz wave transmission. A novel type of air hole position is proposed as the design of the photonic crystal fiber. Numerical analysis exhibits an EML of 0.562 dB/cm at the operating frequency of 1.0 THz and a flat EML of 0.57±0.0225 dB/cm from 1.0-2.0 THz band. The proposed porous core fiber shows a low EML of 0.473 dB/cm with negligible confinement and bending losses at 0.9 THz frequency. This waveguide also exhibits near zero flat dispersion of 0.7±0.3 ps/THz/cm in the frequency band from 1.2 to 2.0 THz.
机译:本文介绍了一种超低损耗波导,具有平坦的有效材料损耗(EML)和接近零色散的平坦特性,适用于太赫兹波传输。提出了一种新型的气孔位置作为光子晶体光纤的设计。数值分析显示,在1.0 THz的工作频率下,EML为0.562 dB / cm,在1.0-2.0 THz频段内的平坦EML为0.57±0.0225 dB / cm。提出的多孔芯纤维在0.9 THz频率下显示出0.473 dB / cm的低EML,限制和弯曲损耗可忽略不计。该波导在1.2至2.0 THz的频带中还表现出接近零的0.7±0.3 ps / THz / cm的平坦色散。

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