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Plasmonic and/or microcavity enhanced optical protein sensing

机译:等离子体和/或微腔增强的光学蛋白质传感

摘要

Instruments for molecular detection at the nano-molar to femto-molar concentration level include a longitudinal capillary column (10) of known wall thickness and diameter. The column (10) contains a medium (24) including a target molecule (30) and a plurality of optically interactive dielectric beads (26) on the order of about 10−6 meters up to about 10−3 meters and/or metal nanoparticles (31) on the order of 1-500 nm. A flow inducer (34) causes longitudinal movement of the target molecule within the column (10). A laser (14) introduces energy laterally with respect to the column (10) at a wavelength and in a direction selected to have a resonant mode within the capillary column wall (12) and couple to the medium (24). A detector (40) is positioned to detect Raman scattering occurring along the column (10) due to the presence of the target molecule.
机译:在纳摩尔级至毫摩尔级浓度范围内进行分子检测的仪器包括已知壁厚和直径的纵向毛细管柱( 10 )。列( 10 )包含包含目标分子( 30 )的介质( 24 )和多个光学相互作用的介电珠( 26 ),约为10 −6 米,最高可达10 −3 米和/或金属纳米粒子( 31 >)在1-500 nm的数量级。流动诱导剂( 34 )引起目标分子在柱( 10 )中的纵向运动。激光( 14 )相对于色谱柱( 10 )以一定的波长和方向从毛细管柱壁( B> 12 )并耦合到媒体( 24 )。放置检测器( 40 ),以检测由于目标分子的存在而沿色谱柱( 10 )发生的拉曼散射。

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