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Fabrication and characterization of porous-core honeycomb bandgap THz fibers

机译:多孔芯蜂窝带隙THz纤维的制备和表征

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摘要

We present a numerical and experimental investigation of a low-loss porous-core honeycomb fiber for terahertz wave guiding. The introduction of a porous core with hole size of the same dimension as the holes in the surrounding honeycomb cladding results in a fiber that can be drawn with much higher precision and reproducibility than a corresponding air-core fiber. The high-precision hole structure provides very clear bandgap guidance and the location of the two measured bandgaps agree well with simulations based on finite-element modeling. Fiber loss measurements reveal the frequency-dependent coupling loss and propagation loss, and we find that the fiber propagation loss is much lower than the bulk material loss within the first band gap between 0.75 and 1.05 THz.
机译:我们提出了用于太赫兹波导的低损耗多孔芯蜂窝纤维的数值和实验研究。引入具有与周围蜂窝覆层中的孔相同尺寸的孔尺寸的多孔芯,可以得到比相应的空心纤维具有更高的精度和可再现性的纤维。高精度的孔结构提供了非常清晰的带隙引导,并且两个测得的带隙的位置与基于有限元建模的模拟非常吻合。光纤损耗测量揭示了频率相关的耦合损耗和传播损耗,我们发现在0.75和1.05 THz之间的第一个带隙内,光纤传播损耗远低于散装材料损耗。

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