Miks Antonín, Novák Jirí, Novák Pavel
Czech Technical University in Prague, Faculty of Civil Engineering, Department of Physics, Thakurova 7, 166 29 Prague 6, Czech Republic.
Appl Opt. 2008 Nov 10;47(32):6088-98. doi: 10.1364/ao.47.006088.
Optical systems with variable optical characteristics (zoom lenses) find broader applications in practice nowadays and methods for their design are constantly developed and improved. We describe a relatively simple method of the design of zoom lenses using the third-order aberration theory. It presents one of the possible approaches of obtaining the Seidel aberration coefficients of individual members of a zoom lens. The advantage of this method is that Seidel aberration coefficients of individual elements of a given optical system can be obtained simply by solving of a set of linear equations. By using these coefficients, one can determine residual aberrations of the optical system without detailed knowledge about the structure of its individual elements. Furthermore, we can determine construction parameters of the optical system, i.e., radii of curvature and thicknesses of individual elements of a given optical system. The proposed method makes it possible to determine which elements of the optical system can be designed as simple lenses and which elements must have a more complicated design, e.g., doublets or triplets.
具有可变光学特性的光学系统(变焦镜头)如今在实践中得到了更广泛的应用,其设计方法也在不断发展和改进。我们描述一种使用三阶像差理论设计变焦镜头的相对简单的方法。它是获得变焦镜头各个部件赛德尔像差系数的一种可能方法。该方法的优点是,通过求解一组线性方程,就可以简单地获得给定光学系统各个元件的赛德尔像差系数。利用这些系数,无需详细了解光学系统各个元件的结构,就可以确定该光学系统的残余像差。此外,我们还可以确定光学系统的结构参数,即给定光学系统各个元件的曲率半径和厚度。所提出的方法能够确定光学系统的哪些元件可以设计为简单透镜,哪些元件必须具有更复杂的设计,例如双合透镜或三合透镜。