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Replication of continuous-profiled micro-optical elements for silicon integration

机译:复制连续轮廓的微光学元件以进行硅集成

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摘要

A novel scheme for the integration of diffractive optical elements onto silicon is presented. The processing is made in reverse order, meaning that the process of structuring the optical elements on the wafer precedes the silicon microstructuring. The first processing step on the wafer is the hot embossing of the optical microstructures into an amorphous fluorocarbon polymer spin coated on the wafer. The cured polymer forms a highly stable material with excellent optical properties. The remaining silicon processing is thus performed with the diffractive optical elements already in place. Two different diffractive structures were used in the development of the method--a (Fresnel) lens with a rather low f-number and a diffractive element producing a fan-out of a large number of paraxial beams.
机译:提出了一种将衍射光学元件集成到硅上的新颖方案。以相反的顺序进行处理,这意味着在晶片上构造光学元件的过程先于硅微构造。晶片上的第一步是将光学微结构热压印成旋涂在晶片上的无定形碳氟聚合物。固化的聚合物形成具有优异光学性能的高度稳定的材料。因此,在已经就位的衍射光学元件中执行剩余的硅处理。该方法的开发中使用了两种不同的衍射结构-一个f值很低的(Fresnel)透镜和一个产生大量近轴光束扇出的衍射元件。

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