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Geometrical Aberration Suppression for Large Aperture Sub-THz Lenses

机译:大光圈亚太赫兹镜头的几何像差抑制

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摘要

Advanced THz setups require high performance optical elements with large numerical apertures and small focal lengths. This is due to the high absorption of humid air and relatively low efficiency of commercially available detectors. Here, we propose a new type of double-sided sub-THz diffractive optical element with suppressed geometrical aberration for narrowband applications (0.3 THz). One side of the element is designed as thin structure in non-paraxial approach which is the exact method, but only for ideally flat elements. The second side will compensate phase distribution differences between ideal thin structure and real volume one. The computer-aided optimization algorithm is performed to design an additional phase distribution of correcting layer assuming volume designing of the first side of the element. The experimental evaluation of the proposed diffractive component created by 3D printing technique shows almost two times larger performance in comparison with uncorrected basic diffractive lens.
机译:先进的THz设置需要具有大数值孔径和小焦距的高性能光学元件。这是由于湿空气的高吸收和市售检测器效率相对较低。在这里,我们为窄带应用(0.3 THz)提出了一种新型的具有抑制像差的双面亚太赫兹衍射光学元件。元素的一侧被设计为非旁轴法的薄结构,这是精确的方法,但仅适用于理想的平面元素。第二面将补偿理想的薄结构和实际体积之一之间的相位分布差异。执行计算机辅助优化算法以假设元素第一面的体积设计来设计校正层的附加相位分布。通过3D打印技术创建的拟议衍射组件的实验评估显示,与未校正的基本衍射透镜相比,其性能几乎提高了两倍。

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