Meng Qingyu, Wang Wei, Ma Hongcai, Dong Jihong
Appl Opt. 2014 May 10;53(14):3028-34. doi: 10.1364/AO.53.003028.
An off-axis three-mirror system (OTS) was designed based on the primary mirror and tertiary mirror (TM) integrated on a single substrate in order to solve the OTS drawbacks, such as the alignment difficulty and the large opto-mechanical weight. Furthermore, an optical freeform surface that can increase the optimizing degrees of freedom (DOF) was applied on the TM in order to achieve a wide field of view (FOV). An example with a focal length of 1200 mm, F-number of 12, and FOV of 10°×4° was given, and the maximum wave front error (WFE) RMS was 0.0126λ, indicating a good imaging quality. The design result shows that the number of alignment DOF was reduced from 12 to 6, and the weight of the mirror support assembly can also be lighter. An XY polynomial, established as an even function of x, was employed as the TM surface, so we obtained an axial symmetrical imaging quality about the x axis, and the axial symmetry aberration performance also brings considerable convenience to alignment and testing for the OTS.
为了解决离轴三镜系统(OTS)的缺点,如对准困难和光学机械重量大等问题,设计了一种基于集成在单个基板上的主镜和三镜(TM)的离轴三镜系统。此外,为了实现宽视场(FOV),在三镜上应用了一种可以增加优化自由度(DOF)的光学自由曲面。给出了一个焦距为1200毫米、F数为12、视场为10°×4°的示例,最大波前误差(WFE)均方根为0.0126λ,表明成像质量良好。设计结果表明,对准自由度的数量从12个减少到了6个,镜支撑组件的重量也可以更轻。采用作为x的偶函数建立的XY多项式作为三镜表面,因此我们获得了关于x轴的轴对称成像质量,并且轴对称像差性能也为OTS的对准和测试带来了相当大的便利。