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Advanced analysis of optical loss factors in polymers for integrated optics circuits

机译:集成光学电路用聚合物中光损耗因子的高级分析

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In the context of optical transmission in the polymer integrated waveguides, transmission losses are a limiting factor for the development of such a technology. In this paper, we analyze the different features that cause optical losses namely intrinsic absorption of the material and light scattering in the bulk. This analysis of optical transmissions mainly in the telecom C-band (1530-1565 nm) and O-band (1260-1360 nm) is based on measurements in bulk material and solutions. These allow to assess the limiting level of losses induced by the material itself. The results can give the intensity attenuation resulting from defects induced by the waveguide processing.It results that losses by scattering process can reach 0.1 dB/cm at 1550 nm when samples are filtered at 0.2 μm. It is slightly higher at 1320 nm but probably less than 0.2 dB/cm. Most of the optical losses are then due to the intrinsic absorption and can be around 0.7 dB/cm for PMMA, at 1550 nm. Consequently, in the case of channel singlemode waveguides, the global linear loss is higher at this wavelength, and, the additional losses are brought by imperfections of the channel both in the bulk and on the surface. This article also shows that reducing the level of C-H bonds content of the polymers down to 25 × 10~(-3) cm~(-3) the material losses are limiting by scattering and can fall down to around 0.2 dB/cm (at 1550 nm).
机译:在聚合物集成波导中的光传输的情况下,传输损耗是这种技术发展的限制因素。在本文中,我们分析了造成光学损耗的不同特征,即材料的固有吸收和主体中的光散射。这种对主要在电信C波段(1530-1565 nm)和O波段(1260-1360 nm)中的光传输的分析基于对散装材料和溶液的测量。这些允许评估材料本身引起的极限损耗水平。结果可以给出由于波导处理引起的缺陷而引起的强度衰减,结果表明,当以0.2μm过滤样品时,散射过程的损耗在1550 nm处可以达到0.1 dB / cm。它在1320 nm处略高,但可能小于0.2 dB / cm。那么,大多数光学损耗是由于固有吸收引起的,对于PMMA,在1550 nm处可能约为0.7 dB / cm。因此,在通道单模波导的情况下,总的线性损耗在该波长处较高,并且额外的损耗是由于通道在整体和表面上的缺陷所引起的。本文还表明,将聚合物的CH键含量降低到25×10〜(-3)cm〜(-3),材料损耗受到散射的限制,并且可以下降到0.2 dB / cm左右(在1550 nm)。

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