Bauer Aaron, Schiesser Eric M, Rolland Jannick P
The Institute of Optics, University of Rochester, 480 Intercampus Drive, Rochester, NY 14627, USA.
Sensors (Basel). 2024 Jul 24;24(15):4816. doi: 10.3390/s24154816.
Reimaging telescopes have an accessible exit pupil that facilitates stray light mitigation and matching to auxiliary optical systems. Freeform surfaces present the opportunity for unobscured reflective systems to be folded into geometries that are otherwise impracticable with conventional surface types. It is critical, however, to understand the limitations of the enabled folding geometries and choose the one that best balances the optical performance and mechanical requirements. Here, we used the aberration theory of freeform surfaces to determine the aberration correction potential for using freeform surfaces in reimaging three-mirror telescopes and established a hierarchy for the different folding geometries without using optimization. We found that when using freeform optics, the ideal folding geometry had 9× better wavefront performance compared to the next best geometry. Within that ideal geometry, the system using freeform optics had 39% better wavefront performance compared to a system using off-axis asphere surfaces, thus quantifying one of the advantages of freeform optics in this design space.
重新成像望远镜具有易于接近的出瞳,这有利于减轻杂散光并与辅助光学系统相匹配。自由曲面为将无遮挡反射系统折叠成采用传统曲面类型无法实现的几何形状提供了机会。然而,了解所实现的折叠几何形状的局限性并选择最能平衡光学性能和机械要求的几何形状至关重要。在此,我们利用自由曲面的像差理论来确定在重新成像三镜望远镜中使用自由曲面进行像差校正的潜力,并在不使用优化的情况下为不同的折叠几何形状建立了一个层次结构。我们发现,在使用自由曲面光学元件时,理想的折叠几何形状与次优几何形状相比,波前性能要好9倍。在该理想几何形状内,使用自由曲面光学元件的系统与使用离轴非球面的系统相比,波前性能要好39%,从而量化了自由曲面光学元件在该设计空间中的一个优势。