Mikš Antonín, Pokorný Petr
J Opt Soc Am A Opt Image Sci Vis. 2021 Jan 1;38(1):99-107. doi: 10.1364/JOSAA.410892.
The paper presents a methodology of calculation of the inner structure of two- and three-component hybrid liquid-membrane lenses with variable focal length that have corrected spherical aberration and coma. Specifically, the formulas for calculation of initial-design inner parameters (radii of curvatures of individual surfaces, axial thickness, and refractive indices of a material of the lens) of a thin-lens system are derived for a hybrid two-component system (doublet) made by one glass and one liquid-membrane lens, and a hybrid three-component lens (triplet) made by one glass lens and two liquid-membrane lenses, which both have variable focal length and corrected spherical aberration and coma for an object at infinity. As optimization during the optical design process requires the starting point be very close to the optimal solution, the presented approach can be successfully used for its calculation, as it is based on fundamental proven formulas of optical aberrations.
本文提出了一种用于计算具有可变焦距且已校正球差和彗差的二组分和三组分混合液膜透镜内部结构的方法。具体而言,针对由一个玻璃透镜和一个液膜透镜制成的混合二组分系统(双合透镜)以及由一个玻璃透镜和两个液膜透镜制成的混合三组分透镜(三合透镜),推导了薄透镜系统初始设计内部参数(各个表面的曲率半径、轴向厚度以及透镜材料的折射率)的计算公式,这两种透镜均具有可变焦距,且对于无穷远处的物体已校正球差和彗差。由于光学设计过程中的优化要求起始点非常接近最优解,所以本文提出的方法基于已被证明的光学像差基本公式,可成功用于其计算。