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Lab-level and low-cost fabrication technique for polymer based micro-optical elements and holographic structures

机译:基于聚合物的微光学元件和全息结构的实验室级和低成本制造技术

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Polymer based diffractive optical elements have gained increasing interest due to their potential to be used in various applications such as illumination technology, micro optics and holography. We present a novel 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-made lithography setups based on digital mirror devices and liquid crystal devices with respect to light efficiency, resolution and contrast. The whole optical setup is designed with an emphasis on low-cost setups, which can be easily implemented in an optical research lab. In a subsequent step, a copy of the microstructures is easily replicated into optical polymeric materials by means of a soft stamp hot embossing process step. The soft stamp is made from Polydimethylsiloxan, which is coated onto the microstructure in resist. 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.
机译:基于聚合物的衍射光学元件已经获得了越来越多的关注,因为它们潜在在各种应用,例如照明技术,微光学器件和全息使用。我们提出了一种新的生产方法来制造基于聚合物的衍射光学元件和全息图。该过程是基于无掩模光刻,其被用于制造光致抗蚀剂中的光学元件。我们基于数字微镜器件,并且相对于光效率,分辨率和对比度的液晶装置讨论几个实验室制造的光刻设置。整个光学装置的设计,重点放在低成本的设置,它可以在光学研究实验室可以轻松实现。在随后的步骤中,微结构的拷贝被容易地由软邮票热压印工艺步骤的装置复制到光学聚合物材料。软印模从Polydimethylsiloxan,其被涂覆到抗蚀剂中的微观结构制成。热压花过程由自制和低成本的热压印机进行。我们提出共焦形貌测量来量化处理的复制精度和展示的衍射光学元件和全息结构,其使用呈现的工艺制造。

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