51. Quantitative analysis and optimization design of the segmented planar integrated optical imaging system based on an inhomogeneous multistage sampling lens array
- Author
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Gao Weiping, Lin Ma, Xiaorui Wang, Hang Yuan, Ying Yuan, and Zhenshun Zhao
- Subjects
Optimal design ,Physics ,business.industry ,Physics::Optics ,Sampling (statistics) ,02 engineering and technology ,Lenslet ,021001 nanoscience & nanotechnology ,01 natural sciences ,Waveguide (optics) ,Signal ,Atomic and Molecular Physics, and Optics ,010309 optics ,Planar ,Optics ,Multistage sampling ,0103 physical sciences ,Spatial frequency ,0210 nano-technology ,business - Abstract
The non-uniformity of the lens array in the segmented planar integrated optical imaging system has not been studied. We design an inhomogeneous multistage sampling lens array based on a hierarchical multistage sampling lens array of the segmented planar integrated optical imaging system by changing the radius of the lenslet for frequency-selective sampling to optimize the design of the UV spatial frequency distribution. The signal transfer model of the proposed imaging system was established considering the radius of the lenslet and key waveguide parameters. Simulation results show that the proposed system produces better imaging quality owing to the selective sampling of frequency. Compared with the homogeneous multistage sampling lens array (radius of 1.8 mm), the optimal radius parameters of the inhomogeneous multistage sampling lens array are given for the same longest lens array length. Detailed calculations of the parameters of the waveguide connected to the lens array were performed. Our results provide a theoretical basis for the optimal design and process of a new segmented planar integrated optical imaging system.
- Published
- 2021