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Arrays and cascades of fluorescent liquid-liquid waveguides: Broadband light sources for spectroscopy in microchannels

机译:荧光液-液波导的阵列和级联:用于微通道光谱的宽带光源

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This paper describes the fabrication and operation of fluidic broadband light sources for use "on-chip" in integrated microanalytical systems. These light sources consist of liquid-core, liquid-cladding (L-2) microchannel waveguides with liquid cores containing fluorescent dyes, excited by incident light from an external halogen bulb. Simultaneous use of multiple fluorophores in a common solution, in a single L-2 light source, is not possible, because energy transfer from fluorophores emitting at shorter wavelength to fluorophores emitting at longer wavelength is essentially complete. Two approaches circumvent this problem of energy transfer; both use spatial separation of the fluorophores in different streams. The first setup uses a cascade (series) of single-core, single-dye light sources of increasing absorption energy to generate a combined broadband output. The second approach uses a parallel array of single-core, single-dye light sources. The spectral content of the light output for both cascade and array light sources can be controlled through choice of flow rates and dyes. Output intensity from these light sources is comparable to standard fiberoptic spectrophotometer light sources. The paper also discusses the efficiency of energy transfer between parallel liquid cores as a function of the fluid medium (index of refraction, path length, and rate of flow).
机译:本文介绍了集成微分析系统中“片上”使用的流体宽带光源的制造和操作。这些光源由液芯,液体包层(L-2)微通道波导组成,其液芯包含荧光染料,并由来自外部卤素灯泡的入射光激发。在单个L-2光源中,不能在一个公共溶液中同时使用多个荧光团,因为从较短波长的荧光团到较长波长的荧光团的能量转移已基本完成。有两种方法可以解决能量转移的问题;两者都使用不同流中荧光团的空间分离。第一种设置使用级联(系列)的单芯单染料光源,这些光源增加吸收能量,以产生组合的宽带输出。第二种方法使用单芯单染料光源的并行阵列。可以通过选择流速和染料来控制级联和阵列光源输出光的光谱含量。这些光源的输出强度与标准光纤分光光度计光源相当。本文还讨论了平行液芯之间能量转移的效率与流体介质(折射率,光程长度和流速)的关系。

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