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Silicon on silicon dioxide slot waveguide evanescent field gas absorption sensor

机译:二氧化硅槽波导浮雕现场气体吸收传感器硅

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摘要

Several trace gases such as H2O, CO, CO2, NO, N2O, NO2 and CH4 strongly absorb in the mid-IR spectral region due to their fundamental rotational and vibrational transitions. In this work, we propose an evanescent field absorption gas sensor based on silicon/silicon dioxide slot waveguide at 3.39m for sensing of methane gas. These waveguides can provide the highest evanescent field ratio (EFR) 47% with adequate dimensions. Higher EFR values often come at an expense of higher propagation losses. These waveguides have relatively higher losses as compared to conventional waveguides, such as rib and slab waveguides, as these fundamental losses are static and the proposed sensing mechanism is established on the incremental loss due to the absorption of the gas. Therefore, incident power can always be incremented to compensate the waveguide losses.
机译:由于其基本的旋转和振动过渡,几种痕量气体如H 2 O,CO,CO 2,NO,N 2 O,NO 2和CH4在中红外光谱区域中强烈吸收。 在这项工作中,我们提出了一种基于3.39M的硅/硅二氧化硅槽波导的蒸发场吸收气体传感器,用于感测甲烷气体。 这些波导可以提供最高的渐逝场比(EFR)> 具有足够尺寸的47%。 较高的EFR值通常以更高的传播损耗为代价。 与传统的波导相比,这些波导具有相对较高的损失,例如肋和板波导,因为这些基本损失是静态的,并且所提出的感测机构是由于气体吸收而导致的增量损耗。 因此,可以始终递增入射功率以补偿波导损耗。

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