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Digital mirror devices and liquid crystal displays in maskless lithography for fabrication of polymer-based holographic structures

机译:无掩模光刻中的数字镜设备和液晶显示器,用于制造基于聚合物的全息结构

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摘要

Polymer-based holographic and diffractive optical elements have gained increasing interest due to their potential to be used in a broad range of applications, such as illumination technology, micro-optics, and holography. We present a production process to fabricate polymer-based diffractive optical elements and holograms. The process is based on maskless lithography, which is used to fabricate optical elements in photoresist. We discuss several lab-level lithography setups based on digital mirror devices and liquid crystal devices with respect to illumination efficiency, resolution, and contrast. The entire optical setup is designed with emphasis on low-cost components, which can be easily implemented in an optical research lab. In a first step, a copy of the microstructures is replicated into optical polymeric materials by means of a soft stamp hot embossing process. The soft stamp is made from polydimethylsiloxan, which is coated onto the microstructure in the photoresist. The hot embossing process is carried out by a self-made and low-cost hot embossing machine. We present confocal topography measurements to quantify the replication accuracy of the process and demonstrate diffractive optical elements and holographic structures, which were fabricated using the process presented. © 2015 Society of Photo-Optical Instrumentation Engineers (SPIE).
机译:基于聚合物的全息和衍射光学元件由于其潜在的广泛用途而引起了越来越多的兴趣,例如照明技术,微光学和全息。我们提出了一种生产工艺,以制造基于聚合物的衍射光学元件和全息图。该工艺基于无掩模光刻,该光刻用于在光刻胶中制造光学元件。我们讨论了基于数字镜面设备和液晶设备的几种实验室级光刻设置,涉及照明效率,分辨率和对比度。整个光学装置的设计重点是低成本组件,这些组件可以在光学研究实验室中轻松实现。第一步,通过软压印热压花工艺将微结构的副本复制到光学聚合物材料中。该软印模由聚二甲基硅氧烷制成,该涂层被涂在光刻胶的微结构上。热压花过程由一台自制的低成本热压花机进行。我们目前共焦形貌测量,以量化该过程的复制精度,并演示衍射光学元件和全息结构,使用提出的过程制造的。 ©2015光电仪器工程师协会(SPIE)。

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