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Design and optimization of mechanically down-doped terahertz fiber directional couplers

机译:机械下掺杂太赫兹光纤定向耦合器的设计与优化

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摘要

We present a thorough practical design optimization of broadband low loss, terahertz (THz) photonic crystal fiber directional couplers in which the two cores are mechanically down-doped with a triangular array of air holes. A figure of merit taking both the 3-dB bandwidth and loss of the coupler into account, is used for optimization of the structure parameters, given by the diameter and pitch of the cladding (d and Λ) and of the core (d and Λ) air-hole structure. The coupler with Λ = 498.7 μm, d= 324.2 μm, Λ = 74.8 μm, and d = 32.5 μm is found to have the best performance at a center frequency of 1THz, with a bandwidth of 0.25 THz and a total device loss of 9.2 dB. The robustness of the optimum coupler to structural changes is investigated. © 2014 Optical Society of America.
机译:我们提出了宽带低损耗太赫兹(THz)光子晶体光纤定向耦合器的全面,实用的设计优化方案,其中两个纤芯被机械地向下掺杂了三角形的气孔阵列。考虑到3-dB带宽和耦合器损耗的品质因数用于优化结构参数,该参数由包层(d和Λ)和纤芯(d和Λ)的直径和节距给出)气孔结构。发现Λ= 498.7μm,d = 324.2μm,Λ= 74.8μm和d = 32.5μm的耦合器在1THz的中心频率,0.25 THz的带宽和9.2的总器件损耗下具有最佳性能D b。研究了最佳耦合器对结构变化的鲁棒性。 ©2014美国眼镜学会。

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