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Real-time polarimetric optical sensor using macroporous alumina membranes

机译:使用大孔氧化铝膜的实时偏振光学传感器

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We report on the demonstration of real-time refractive index sensing within 60 μm thick free-standing macroporous alumina membranes with pore diameters of 200 nm. The free-standing macroporous alumina membranes allow the analytes to flow through the pores for targeted delivery, resulting in fast sensing responses. The polarimetric measurement platform exploits the optical anisotropy of the membranes in monitoring the refractive index variations of the analytes that fill the pores, providing highly sensitive and real-time measurements. The experimental characterization of the membranes' birefringence at wavelengths of 808, 980, and 1500 nm showed a decrease in birefringence for shorter wavelengths caused by the depolarization process that takes place when polarized light passes through a porous medium. Volumetric sensing experiments performed at the same wavelengths demonstrated detection limits of 8.1 × 10~(-6), 5.2 × 10~(-6), and 6 × 10~(-6) refractive index units at wavelengths of 808, 980, and 1500 nm, respectively.
机译:我们报告了在直径为200 nm的60μm厚独立式大孔氧化铝膜中进行实时折射率传感的演示。独立的大孔氧化铝膜可让分析物流过孔,以进行有针对性的输送,从而实现快速的传感响应。偏振测量平台利用膜的光学各向异性来监测填充孔的分析物的折射率变化,从而提供高度灵敏的实时测量。膜在808、980和1500 nm波长处的双折射的实验表征表明,由于偏振光通过多孔介质时发生的去偏振过程,较短波长的双折射会降低。在相同波长下进行的体积感测实验表明,在808、980和800波长下,检测限分别为8.1×10〜(-6),5.2×10〜(-6)和6×10〜(-6)折射率单位。分别为1500 nm

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