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Multilevel Micro-Structuring of Glassy Carbon for Precision Glass Molding of Diffractive Optical Elements

机译:用于衍射光学元件的精密玻璃模制的玻碳多级微结构

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A consumer market for diffractive optical elements in glass can only be created if high efficient elements are available at affordable prices. In diffractive optics the efficiency and optical properties increases with the number of levels used, but in the same way the costs are multiplied by the number if fabrication steps. Replication of multilevel diffractive optical elements in glass would allow cost efficient fabrication but a suitable mold material is needed. Glassy carbon shows a high mechanical strength, thermal stability and non-sticking adhesion properties, which makes it an excellent candidate as mold material for precision compression molding of low and high glass-transition temperature materials. We introduce an 8 level micro structuring process for glassy carbon molds with standard photolithography and a Ti layer as hard mask for reactive ion etching. The molds were applied to thermal imprinting onto low and high transition temperature glass. Optical performance was tested for the molded samples with different designs for laser beamsplitters. The results show a good agreement to the design specification. Our result allow us to show limitations of our fabrication technique and we discussed the suitability of precision glass molding for cost efficient mass production with a high quality.
机译:只有在高效的元素以实惠的价格获得高效元素,才能创建玻璃中衍射光学元件的消费市场。在衍射光学器件中,效率和光学性质随着所用的水平数而增加,但是,如果制造步骤,则成本乘以数量的成本。玻璃中的多级衍射光学元件的复制将允许成本高效的制造,但需要合适的模具材料。玻璃碳显示出高机械强度,热稳定性和非粘性粘合性能,这使其成为低玻璃化温度材料精密压缩成型的优异候选物作为模具材料。我们介绍用标准光刻法和Ti层作为硬掩模的反应离子蚀刻的玻璃碳模具8级微结构化过程。将模具施加到低温和高转变温度玻璃上的热印迹。用不同设计的模塑样品测试光学性能,用于激光束剖面。结果表明了设计规范的良好一致性。我们的结果允许我们展示我们的制造技术的局限性,并讨论了精密玻璃模塑的适用性,以具有高质量的高效批量生产。

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