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首页> 外文期刊>Applied optics >Nanoporosity effect in optical loss of single-mode polymer waveguides
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Nanoporosity effect in optical loss of single-mode polymer waveguides

机译:纳米孔隙率对单模聚合物波导光损耗的影响

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摘要

We fabricate single-mode polymer waveguide structures exhibiting polarization-independent ultra-low loss of 0.04 and 0.05 dB/cm at the 1310 and 1550 nm bands, respectively, with a (DELTA)n of 1.6percent. A porous structure that arises during the fabrication process is studied by considering its implications in the propagation loss based on the Rayleigh-Mie scattering loss mechanism. We demonstrate that the porous structure is to be reduced to the nanoscale (i.e., < 10 nm) to realize waveguide structures with ultra-low propagation losses based on fabrications and measurements of morphologies with various degrees of porosity. Further, the bending loss and its respective polarization-dependent propagation loss behavior are analyzed to realize compact devices with ultra-low-loss and polarization-independent features, where a 4mm bending radius is found to be adequate for such a performance over the 1550 nm band.
机译:我们制造的单模聚合物波导结构在1310和1550 nm波段分别显示出与偏振无关的超低损耗,分别为0.04和0.05 dB / cm,Δn为1.6%。基于Rayleigh-Mie散射损耗机理,通过考虑其对传播损耗的影响,研究了在制造过程中出现的多孔结构。我们证明了多孔结构将被缩小到纳米级(即<10 nm),以基于具有不同孔隙度的形态的制造和测量来实现具有超低传播损耗的波导结构。此外,分析了弯曲损耗及其各自与偏振有关的传播损耗行为,以实现具有超低损耗和与偏振无关的特征的紧凑型器件,其中发现4mm的弯曲半径对于1550 nm以上的性能而言已足够带。

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