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通过注射压缩成型和聚焦离子束结构化钛成型工具实现的可大规模生产的微光学元件

Mass-producible micro-optical elements by injection compression molding and focused ion beam structured titanium molding tools.

作者信息

Ristok Simon, Roeder Marcel, Thiele Simon, Hentschel Mario, Guenther Thomas, Zimmermann André, Herkommer Alois M, Giessen Harald

出版信息

Opt Lett. 2020 Mar 1;45(5):1184-1187. doi: 10.1364/OL.385599.

Abstract

We demonstrate mass production compatible fabrication of polymer-based micro Fresnel lenses by injection compression molding. The extremely robust titanium-molding tool is structured with high precision by focused ion beam milling. In order to achieve optimal shape accuracy in the titanium we use an iterative design optimization. The inverse Fresnel lens structured into the titanium is transferred to polymers by injection compression molding, enabling rapid mass replication. We show that the optical performance of the molded diffractive Fresnel lenses is in good agreement with simulations, rendering our approach suitable for applications that require compact and high-quality optical elements in large numbers.

摘要

我们展示了通过注射压缩成型实现基于聚合物的微菲涅尔透镜的大规模生产兼容制造。极其坚固的钛制成型工具通过聚焦离子束铣削进行高精度结构化。为了在钛中实现最佳形状精度,我们采用迭代设计优化。通过注射压缩成型将构建在钛中的反向菲涅尔透镜转移到聚合物上,从而实现快速大规模复制。我们表明,模制衍射菲涅尔透镜的光学性能与模拟结果高度吻合,这使得我们的方法适用于需要大量紧凑且高质量光学元件的应用。

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