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On-chip absorption spectroscopy enabled by graded index fiber tips

机译:等级指数光纤提示使芯片吸收光谱有限

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摘要

This paper describes the design and characterization of miniaturized optofluidic devices for sensing based on integrating collimating optical fibers with custom microfluidic chips. The use of collimating graded-index fiber (GIF) tips allows for effective fiber-channel-fiber interfaces to be realized when compared with using highly-divergent standard single-mode fiber (SMF). The reduction in both beam divergence and insertion losses for the GIF configuration compared with SMF was characterized for a 10.0 mm channel. Absorption spectroscopy was demonstrated on chip for the measurement of red color dye (Ponceau 4R), and the detection of thiocyanate in water and artificial human saliva. The proposed optofluidic setup allows for absorption spectroscopy measurements to be performed with only 200 µL of solution which is an order of magnitude smaller than for standard cuvettes but provides a comparable sensitivity. The approach could be integrated into a lab-on-a-chip system that is compact and does not require free-space optics to perform absorption spectroscopy.
机译:本文介绍了基于与定制微流体芯片的准直光纤感测的小型化晶体化装置的设计和表征。与使用高度发散的标准单模光纤(SMF)相比,使用准直分级指数光纤(GIF)提示允许实现有效的光纤通道光纤接口。与SMF相比,GIF配置的光束发散和插入损耗的减小特征在于10.0mm通道。对芯片进行了吸收光谱,用于测量红色染料(PONCEAU 4R),以及在水中的硫氰酸酯和人造人唾液中的检测。所提出的optof流体设置允许用仅200μl溶液进行吸收光谱测量,该溶液是小于标准比皿的数量级,但提供了可比灵敏度。该方法可以集成到一个紧凑的实验室系统中,不需要自由空间光学器件来执行吸收光谱。

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