Wang Zichan, Kim Youngsik, Milster Tom D
Appl Opt. 2021 Jul 1;60(19):D73-D82. doi: 10.1364/AO.421032.
Large diameter, high-harmonic diffractive lenses could find applications in future space telescopes. Residual chromatic aberrations from these lenses can cause significant blurring. Solutions to reduce chromatic dispersion and other aberrations to diffraction-limited performance are discussed. A design example based on a 240-mm-diameter, 1-m focal length multi-order diffractive engineered lens operating over the astronomical R-Band (589-727 nm) is presented. The design example uses a relay subsystem with four times smaller diameter than the primary. This color corrector includes both refractive and diffractive optical elements and reduces the longitudinal chromatic aberrations by more than a factor of 30 compared to the primary lens alone, while maintaining the effective focal length and numerical aperture of the system.
大口径高谐波衍射透镜有望在未来的太空望远镜中得到应用。这些透镜产生的残余色差会导致明显的图像模糊。本文讨论了将色散和其他像差降低到衍射极限性能的解决方案。给出了一个基于直径240毫米、焦距1米、工作于天文R波段(589 - 727纳米)的多阶衍射工程透镜的设计实例。该设计实例采用了一个直径比主透镜小四分之一的中继子系统。这种消色差透镜同时包含折射和衍射光学元件,与单独的主透镜相比,纵向色差降低了30倍以上,同时保持了系统的有效焦距和数值孔径。