Hsu Hsiang-Han, Ishigure Takaaki
Graduate School of Science and Technology, Keio University, Kohoku-ku, Yokohama, Japan.
Opt Express. 2010 Jun 21;18(13):13368-78. doi: 10.1364/OE.18.013368.
We fabricate graded index (GI) multi-channel polymer optical waveguides comprised of poly methyl methacrylate (PMMA)-poly benzyl methacrylate copolymer for the purpose of achieving high thermal stability in the GI profiles. The waveguides obtained show slightly higher propagation loss (0.033 dB/cm at 850 nm) than doped PMMA based GI-core polymer waveguides we have reported, due to the excess scattering loss inherent to the mixture of copolymer and homo-polymer in the core area. In this paper, we focus on the influence of the excess scattering loss on mode conversion and inter-channel crosstalk. We simulate the behavior of light propagating inside the core with and without the scattering effect. Using the simulation, the excess loss experimentally observed in the copolymer-core waveguide is successfully reproduced, and then, we find that the excess scattering loss of 0.008 dB/cm could increase the inter-channel crosstalk from -30 dB to -23 dB which agrees with the experimentally observed value. Although the simulation of the inter-channel crosstalk was performed only on our GI-core polymer optical waveguides, it is capable of modeling the conventional SI rectangular-core waveguides. Some amount of excess scattering is generally observed in the conventional SI-core waveguides, and thus, the application of this simulation to SI-core waveguides allows a feasible design for high-density alignment of the waveguides.
我们制造了由聚甲基丙烯酸甲酯(PMMA)-聚甲基丙烯酸苄酯共聚物组成的渐变折射率(GI)多通道聚合物光波导,目的是在GI分布中实现高的热稳定性。所获得的光波导显示出比我们报道的基于掺杂PMMA的GI芯聚合物光波导略高的传播损耗(在850nm处为0.033dB/cm),这是由于芯区共聚物和均聚物混合物固有的过量散射损耗。在本文中,我们关注过量散射损耗对模式转换和通道间串扰的影响。我们模拟了有和没有散射效应时光在芯内传播的行为。通过模拟,成功再现了在共聚物芯光波导中实验观察到的过量损耗,然后,我们发现0.008dB/cm的过量散射损耗可使通道间串扰从-30dB增加到-23dB,这与实验观察值一致。虽然通道间串扰的模拟仅在我们的GI芯聚合物光波导上进行,但它能够对传统的SI矩形芯光波导进行建模。在传统的SI芯光波导中通常会观察到一定量的过量散射,因此,将此模拟应用于SI芯光波导可为光波导的高密度排列提供可行的设计。