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Multimode interference devices for focusing in microfluidic channels

机译:用于微流道聚焦的多模干涉装置

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摘要

Low-cost, compact, automated optical microsystems for chemical analysis, such as microflow cytometers for identification of individual biological cells, require monolithically integrated microlenses for focusing in microfluidic channels, to enable high-resolution scattering and fluorescence measurements. The multimode interference device (MMI), which makes use of self-imaging in multimode waveguides, is shown to be a simple and effective alternative to the microlens for microflow cytometry. The MMIs have been designed, realized, and integrated with microfluidic channels in a silica-based glass waveguide material system. Focal spot sizes of 2.4 (mu)m for MMIs have been measured at foci as far as 43.7 (mu)m into the microfluidic channel.
机译:用于化学分析的低成本,紧凑,自动化的光学微系统,例如用于识别单个生物细胞的微流式细胞仪,需要单片集成的微透镜来聚焦在微流体通道中,以实现高分辨率的散射和荧光测量。在多模波导中利用自成像的多模干涉装置(MMI)被证明是用于微流式细胞术的微透镜的一种简单有效的替代方案。 MMI已在基于二氧化硅的玻璃波导材料系统中设计,实现并与微流体通道集成。对于MMI,焦点的大小为2.4 µm,在进入微流体通道的焦点处测得的距离最大为43.7 µm。

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