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Taper biosensor in fiber ring laser cavity for protein detection

机译:纤维环激光腔中的锥形生物传感器进行蛋白质检测

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摘要

This paper demonstrates the integration of a bio-functionalized tapered fiber sensor in a fiber laser cavity for sensing of biological molecules. Interferometric effect from the taper generated single wavelength lasing output that was spatially measured to detect any changes. The sensing performance of the integrated system was assessed by immersing the biosensor in various concentrations of avidin ranging from 1 to 10 pM at laser threshold (40 mW) and at the maximum pump power of 200 mW. Selectivity of the sensor was ensured by immobilizing biotin on the surface of the tapered region that would act as complementary molecules to avidin. The proposed setup obtained sensitivity values of 0.40 nm/pM and 1.02 nm/pM at pump power of 40 mW and 200 mW, respectively. The integrated system simplifies the sensing output and analysis without compromising the performance of tapered optical fiber-based biosensor.
机译:本文展示了生物官能化锥形光纤传感器在光纤激光腔中的集成,以进行生物分子的感测。 来自锥度产生的干涉效应产生的单波长激光输出,该输出在空间上测量以检测任何变化。 通过在激光阈值(40mW)的各种浓度的抗生物素蛋白中浸入抗生物传感器,并以200mW的最大泵浦功率浸入从1至10μm的各种浓度的抗生物素蛋白来评估集成系统的感测性能。 通过将生物素固定在锥形区域的表面上来确保传感器的选择性,该锥形区域将作为抗生物素蛋白的互补分子。 所提出的设置在40mW和200mW的泵浦功率分别获得0.40nm / pm和1.02nm / pm的灵敏度值。 集成系统简化了感测输出和分析,而不会影响基于锥形光纤的生物传感器的性能。

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