Karcı Ozgur, Ekinci Mustafa
Appl Opt. 2020 Sep 20;59(27):8434-8442. doi: 10.1364/AO.395673.
We present the realization of a high-precision, 0.5 m aperture size Cassegrain collimator system. The optical design, the optomechanical design, the mirror manufacturing, and the telescope alignment with a performance evaluation are extensively discussed. The optical design of the collimator is based on the Cassegrain telescope design with two aspheric mirrors. An athermalized, high stability optomechanical structure is conceived for the collimator to meet stringent performance requirements. The high-quality mirrors are made of low-expansion Zerodur glass-ceramic and the primary mirror is light-weighted to 63% of its initial weight. The design of a dedicated five-axis flexure mechanism driven by nanopositioner stages to compensate the secondary mirror misalignments is given. Primary and secondary mirrors with aspheric surfaces are manufactured, and their forms are measured by computer-generated holograms with a phase-shifting Fizeau interferometer. The alignment strategy is based on minimizing Fringe Zernike coefficients of wavefront decomposition measured by an autocollimation test setup. The alignment sensitivity and corresponding Fringe Zernike coefficient terms are determined by the ray-tracing software that introduces the intentional misalignments of the secondary mirror. The on-axis alignment of the collimator is performed with the guidance of sensitivity analysis results. The final root-mean-square wavefront error for the collimated beam is measured to be 0.021.
我们展示了一个高精度、孔径尺寸为0.5米的卡塞格伦准直仪系统的实现。文中广泛讨论了光学设计、光机设计、镜面制造以及带有性能评估的望远镜对准。准直仪的光学设计基于带有两个非球面镜的卡塞格伦望远镜设计。为该准直仪构思了一种消热、高稳定性的光机结构,以满足严格的性能要求。高质量的镜面由低膨胀微晶玻璃Zerodur制成,主镜重量减轻至其初始重量的63%。给出了一种由纳米定位平台驱动的专用五轴挠曲机构的设计,用于补偿副镜的不对准。制造了具有非球面表面的主镜和副镜,并使用相移菲索干涉仪通过计算机生成全息图测量它们的形状。对准策略基于最小化通过自准直测试装置测量的波前分解的条纹泽尼克系数。对准灵敏度和相应的条纹泽尼克系数项由引入副镜故意不对准的光线追迹软件确定。准直仪的轴上对准在灵敏度分析结果的指导下进行。测量得到准直光束的最终均方根波前误差为0.021。