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Fabrication of holographic diffractive optical elements for enhancing light collection from fluorescence-based biochips

机译:全息衍射光学元件的制造,用于增强基于荧光的生物芯片的光收集

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摘要

An approach to enhancing the light collection from fluorescence emitters bound on the surface of a biochip is presented. It is based on the integration of diffractive optical elements on the underside of the chip that are essentially thick volume holograms written into a layer of photopolymer recording material. The high diffractive efficiency and angular selectivity of these types of diffractive elements make them very effective collectors of the spatially anisotropic light emitted by surface-bound fluorophores. The holographic lithography setup used to fabricate the diffractive elements is described. Results obtained using both a focused laser and light from a fluorescence spot to characterize the performance of the diffractive optical elements are presented.
机译:提出了一种增强来自结合在生物芯片表面上的荧光发射体的光收集的方法。它基于在芯片底面上的衍射光学元件的集成,这些光学元件本质上是厚厚的全息图,写在光聚合物记录材料层中。这些类型的衍射元件的高衍射效率和角度选择性使它们成为表面束缚荧光团发出的空间各向异性光的非常有效的收集器。描述了用于制造衍射元件的全息光刻设备。提出了使用聚焦激光和来自荧光点的光来表征衍射光学元件性能的结果。

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