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DEVELOPMENT AND TESTING OF A HOLOGRAPHIC PROJECTION SYSTEM

机译:全息投影系统的开发和测试

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We describe the development and testing of a holographic projection system that is used to produce micro-optical devices. The projector uses a two-dimensional two-phase-level diffraction grating to produce multiple coherent beams and an interferometric optical system behind the grating to recombine the beams to produce interference patterns that have been recorded within a photosensitive substrate. The two different substrates that we used are a diazo imaging material and a bisbenzocyclobutene (BCB) polymeric resin for fabrication of surface relief microstructures, After the exposed photosensitive substrate is developed, the recorded interference pattern forms a micro-optical device. The analysis and testing of these micro-optical devices show promise that this technique can form patterns uniformly over a region of several centimeters in diameter on aat or curved substrates. The experimental testing results of these micro-optical devices demonstrate that this method is a simple and energy efficient system to produce microstructures compared with other methods. These devices may be used as a new generation of directional light filters or monolithic microlenslet arrays that may have applications in communications, display, and components technologies. (C) 1996 Optical Society of America [References: 14]
机译:我们描述了用于生产微光学设备的全息投影系统的开发和测试。该投影仪使用二维两相水平衍射光栅产生多个相干光束,并在光栅后面使用干涉光学系统以重新结合光束以产生已记录在光敏基板内的干涉图案。我们使用的两种不同的基材是重氮成像材料和双苯并环丁烯(BCB)聚合物树脂,用于制造表面浮雕微结构。在曝光的感光基材显影后,记录的干涉图样形成了微光学装置。对这些微光学器件的分析和测试表明,该技术有望在aat或弯曲基板上的直径为几厘米的区域内均匀地形成图案。这些微光学器件的实验测试结果表明,与其他方法相比,该方法是一种用于生产微结构的简单且节能的系统。这些设备可以用作新一代定向滤光器或单片微透镜阵列,可以在通信,显示和组件技术中应用。 (C)1996年美国眼镜学会[参考文献:14]

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