Imaging properties of radiative multi-sub mirror array structure

Xiaoyao Liu, Zhongcheng Liang, Weiqian Hao, Ruijuan Zhao, Meimei Kong, Tao Chen, Yue Zhang
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Abstract

Based on the characteristics of liquid lens sparse aperture imaging, a radiative multiplet array structure is proposed; a simplified model of sparse aperture imaging is given, and the analytical expression of the modulation transfer function is derived from the optical pupil function of the multiplet array structure; the specific distribution form of this multiplet array structure is given, and the structure parameters are approximated by the dimensionless method; the two types of radiative multiplet array structures are discussed, and the filling factor, redundancy, modulation transfer function and other characteristic parameters are calculated. The physical phenomena exhibited by the parametric scan are discussed, and the structural features and imaging characteristics of these two arrays are compared. The results show that the type-II structure with larger actual equivalent aperture and actual cutoff frequency and lower redundancy is selected when the average modulation transfer function and the IF characteristics of the modulation transfer function of the two structures are close to each other; the type-II structure has certain advantages in imaging; the conclusion is suitable for arbitrary enclosing circle size because the liquid lens-based multiplet array structure adopts dimensionless approximation parameters; compared with the composite toroidal structure, the radiative multiplet mirror structure has a larger actual cut-off frequency and actual equivalent aperture when the filling factor is the same.
辐射多子镜阵列结构的成像特性
针对液体透镜稀疏孔径成像的特点,提出了一种辐射多路阵结构;给出了稀疏孔径成像的简化模型,并由多路阵列结构的光学瞳函数导出了调制传递函数的解析表达式;给出了该多阵结构的具体分布形式,并用无量纲法对结构参数进行了近似;讨论了两种类型的辐射复用阵列结构,并计算了填充因子、冗余、调制传递函数等特性参数。讨论了参数扫描所显示的物理现象,并比较了这两种阵列的结构特征和成像特性。结果表明:当两种结构的平均调制传递函数和调制传递函数的中频特性接近时,选择实际等效孔径和实际截止频率较大、冗余度较低的ii型结构;ii型结构具有一定的成像优势;由于基于液体透镜的多阵结构采用无因次近似参数,该结论适用于任意围圆尺寸;与复合环形结构相比,在填充系数相同的情况下,辐射多倍镜结构具有更大的实际截止频率和实际等效孔径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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