光学
主镜像
望远镜
曲面镜
有源光学
次镜
多项式的
计算机科学
镜像
视野
变形镜
球差
曲面(拓扑)
物理
焦距
自适应光学
数学
几何学
数学分析
镜头(地质)
作者
Qingyu Meng,Hongyuan Wang,Kejun Wang,Yan Wang,Zhenhua Ji,Dong Wang
出处
期刊:Applied optics
[The Optical Society]
日期:2016-11-01
卷期号:55 (32): 8962-8962
被引量:66
摘要
We report on the design of an off-axis three-mirror freeform telescope with a large field of view (FOV) based on an integration mirror (IM). This design is the continuation of the authors' previous work. Based on aberration theory, we established a suitable nonrelayed three-mirror-anastigmat initial configuration for integration mirror design. For an optical freeform surface, we analyzed the qualitative aberration correction ability of a x-y polynomial surface that can provide a simple, convenient, and user-friendly relationship between freeform surface term coefficients and aberrations and then applied the x-y polynomial surface on the tertiary mirror to improve the system optimization degrees of freedom. In an example with a focal length of 1200 mm, an F-number of 12, and a FOV of 1°×30°, the tolerance performance was analyzed, and the system presented a good imaging performance. In addition, the IM structure and opto-mechanics support structure were designed and analyzed. The confirmatory design results showed that the integration of the primary mirror and tertiary mirror can improve opto-mechanical properties judged by multiple criteria. In conclusion, the integration of the primary mirror and tertiary mirror not only offers alignment convenience as described previously but also improves system opto-mechanical properties in multiple perspectives. We believe this large linear FOV system based on IM has broad future applications in the optical remote sensing field.
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