Zhu Yang, Cheng Jinshuo, Liu Yujuan
Opt Express. 2021 Oct 11;29(21):34707-34722. doi: 10.1364/OE.439318.
This report proposes an athermalization and achromatization method based on combined glasses and comprehensive distance weight to select and replace optical and housing tube materials quantitatively without multiple iterations. In addition, it presents a new achromatic and athermal condition of the replacement search method using combined glasses. It establishes an athermal glass map model combining the cluster center, tube materials, two combined lenses, and a rest equivalent lens to analyze the characteristics of the glass distribution. A cluster analysis method was introduced to analyze the distribution characteristics of the athermal glass map in the visible catalog. The athermal ability of the housing tube and the replacement of combined glass material are evaluated by distance weight in athermal glass map. A complex aerial multiple lenses system was designed using this method and maintained high imaging quality from -40 °C to 70 °C. This method can reduce the number of iterations for the selection of combined glass and significantly improves the optimization efficiency of athermalization.
本报告提出了一种基于组合玻璃和综合距离权重的消热差和消色差方法,可定量选择和替换光学及镜筒材料,无需多次迭代。此外,还提出了一种使用组合玻璃的替换搜索方法的新的消色差和消热差条件。建立了一个结合聚类中心、镜筒材料、两个组合透镜和一个剩余等效透镜的消热差玻璃图模型,以分析玻璃分布特性。引入聚类分析方法来分析可见目录中消热差玻璃图的分布特征。通过消热差玻璃图中的距离权重评估镜筒的消热能力和组合玻璃材料的替换情况。使用该方法设计了一个复杂的航空多透镜系统,并在-40°C至70°C范围内保持了高成像质量。该方法可减少组合玻璃选择的迭代次数,并显著提高消热差优化效率。