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Demonstration of a liquid core optical ring resonator sensor coupled with an ARROW waveguide array

机译:液体光学环谐振器传感器与箭头波导阵列相结合的演示

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The liquid core optical ring resonator (LCORR) sensor is a newly developed capillary-based ring resonator that integrates microfluidics with photonic sensing technology. The circular cross-section of the capillary forms a ring resonator that supports whispering gallery modes (WGM). The WGM evanescent field is exposed to the capillary core and detects the aqueous samples conducted by the capillary using a label-free protocol. The high-Q of the WGM allows for repetitive light-analyte interaction, resulting in excellent sensitivity. Recently a detection limit of the LCORR on the order of 10~(-6) refractive index units was reported.In this work, we have further integrated the LCORR with an anti-resonant reflective optical waveguide (ARROW) array for multiplexed sensor development. The ARROW, with an array of 8 waveguides separated by 250 microns each, consists of a core and a lower reflective double-layer with alternating high and low refractive index, and thus has a significant evanescent field above the waveguide. The WGM is excited at each LCORR/ARROW junction simultaneously when the LCORR is brought into contact with the ARROW array. We experimentally investigated the optimal waveguide geometry for WGM excitation using a range of waveguide heights from 2 to 5 microns. Furthermore, the LCORR/ARROW system is utilized for a biomolecule sensing demonstration.The LCORR/ARROW system is not only essential for assembling a robust, practical, and densely multiplexed sensor array, but also enables on-capillary flow analysis that has broad applications in capillary electrophoresis,chromatography, and lab-on-a-chip development.
机译:液体芯光环谐振器(LCORR)传感器是一种新开发的基于毛细管的环形谐振器,其与光子传感技术集成了微流体。毛细管的圆形横截面形成环形谐振器,其支撑耳语廊道模式(WGM)。 WGM蒸发场暴露于毛细核心并使用无标记方案检测毛细管进行的水性样品。 WGM的高Q允许重复的光分析物相互作用,导致良好的灵敏度。最近,报告了10〜(-6)折射率单元的LCorr的检测限。在此工作中,我们已经进一步集成了用于多路复用传感器开发的防谐振反射光波导(箭头)阵列的LCorr。箭头,带有8个波导的阵列,每个波导分隔250微米,由芯和下反射双层组成,具有交替的高折射率和低折射率,因此具有在波导上方的显着的渐逝场。当LCORR与箭头阵列接触时,同时在每个LCORR /箭头结处激发WGM。我们通过从2到5微米的一系列波导高度进行了实验研究了WGM激发的最佳波导几何形状。此外,LCORR /箭头系统用于生物分子感测示范。LCORR /箭头系统不仅适用于组装稳健,实用和密体的复用传感器阵列必不可少,还可以实现具有广泛应用的毛细管流量分析毛细管电泳,色谱法和芯片式显影。

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