【24h】

Characterisation of Novel Refractometric Sensing Systems

机译:新型折射测量传感系统的特征

获取原文

摘要

Simulations and experimental results for novel refractometric-sensing platforms are presented here. The first platform is based on a multi-mode interference coupler (MMIC) in which the top and sidewalk of the coupler are exposed to a humidity-sensing enrichment layer. Sensor operation is based on the creation of self-images of the input field into the coupler, at regular intervals along the coupler. This phenomenon is due to interference between the optical modes in MMICs. Changes in the refractive index of the sensing layer cause predictable shifts in the position of the output image, which in turn affects the amount of light coupled into the output waveguide. Sensitivity enhancement has been demonstrated by fabricating longer MMICs capturing higher-ranking self-images, which are shifted more than the first self-image. Consequently, more significant changes in the amount of light coupled to the output are observed for a given refractive index change. The second platform demonstrated is a Multi-Channel Directional Coupler sensor (MCDC). It differs from the MMIC in that the sensing region now consists of multiple single-mode waveguides, which are in close enough proximity to allow light to transfer between the waveguides. Sensitivity dependance on platform length has been investigated and compared with that of the MMIC. The devices have been fabricated by the direct laser writing process on UV curable hybrid sol-gel materials. Such materials allow implementation of planar technology enabling integration on a silicon substrate. Future applications of these platforms include chemical and bio-chemical sensing is the areas of process, environmental and bio-diagnostic monitoring.
机译:这里提出了新型折射计传感平台的模拟和实验结果。第一平台基于多模干扰耦合器(MMIC),其中耦合器的顶部和人行道暴露于湿度感测的富集层。传感器操作基于沿耦合器的规则间隔地基于输入字段的自我图像的创建进入耦合器。这种现象是由于MMIC中的光学模式之间的干扰。感测层的折射率的变化导致输出图像的位置中的可预测移位,这又影响耦合到输出波导中的光量。通过制造捕获较高级自拍的较长MMIC来证明敏感性增强,其偏移超过第一自动图像。因此,对于给定的折射率变化,观察到与输出耦合到输出的光量的更显着的变化。所示的第二平台是多通道定向耦合器传感器(MCDC)。它与MMIC的不同之处在于,感测区域现在由多个单模波导组成,其靠近足够的接近,以允许光在波导之间传送。研究了对平台长度的敏感性,并与MMIC的敏感性。通过UV可固化杂交溶胶 - 凝胶材料的直接激光书写方法制造了该装置。这种材料允许实施平面技术,从而能够在硅衬底上积分。这些平台的未来应用包括化学和生物化学传感,是过程,环境和生物诊断监测的领域。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号