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Design and optical performance research of multi-phase diffractive microlens arrays

机译:多相衍射微透镜阵列的设计和光学性能研究

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摘要

To improve the performance of infrared focal plane arrays, multi-phase-level 256 x 256 element diffractive microlens arrays with a center wavelength of 4 mum are designed using a novel partial etching method based on the scalar diffraction theory and computer aided design. A testing system is established with an optical communication semiconductor laser and detector for measuring the diffraction efficiency and point spread function of the designed multi-phase diffractive microlens arrays. The measurement results indicate that the measured diffraction efficiency of 16-phase Si and quartz diffractive microlens arrays are 83.7% and 87.5%, respectively, and the optical response of the infrared focal plane arrays with integration of the diffractive microlens arrays is increased by a factor of 2.23.
机译:为了提高红外焦平面阵列的性能,基于标量衍射理论和计算机辅助设计,采用新颖的局部刻蚀方法,设计了中心波长为4μm的多相级256×256元件衍射微透镜阵列。建立了具有光通信半导体激光器和检测器的测试系统,用于测量所设计的多相衍射微透镜阵列的衍射效率和点扩散函数。测量结果表明,测得的16相硅和石英衍射微透镜阵列的衍射效率分别为83.7%和87.5%,并且集成了衍射微透镜阵列的红外焦平面阵列的光学响应提高了一个因子。 2.23。

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