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Design and fabrication of diffractive optical elements by use of gray-scale photolithography

机译:利用灰度光刻设计和制造衍射光学元件

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Diffractive optical elements (DOEs) are key components in the miniaturization of optical systems because of their planarity and extreme thinness. We demonstrate the fabrication of DOEs by use of gray-scale photolithography with a high-energy-beam sensitive glass photomask. We obtained DOE lenses with continuous phase profiles as small as 800 um in diameter and 5.9 um in the outermost grating pitch by selecting a suitable optical density for each height level and optimizing the process variables. Microlenses patterned with eight levels and replicated by UV embossing with the polymer master mold showed a diffraction efficiency of 81.5%, which was sufficiently high for the devices to be used as optical pickups. The effects of deviations in diffraction efficiency between the DOE height and profile design were analyzed.
机译:衍射光学元件(DOE)由于其平面性和极薄性而成为光学系统小型化的关键组成部分。我们演示了通过使用具有高能束敏感玻璃光掩模的灰度光刻技术来制造DOE。通过为每个高度水平选择合适的光密度并优化工艺变量,我们获得了DOE透镜,这些透镜具有连续的相位分布,直径最小为800 um,最外面的光栅间距为5.9 um。具有八级图案并通过用聚合物主模进行UV压印复制的微透镜,其衍射效率为81.5%,对于用作光学头的器件而言,该效率足够高。分析了DOE高度和轮廓设计之间衍射效率偏差的影响。

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