论文标题

线性散光的发展 - 三镜系统(LAF-TMS)

Development of Linear Astigmatism Free -- Three Mirror System (LAF-TMS)

论文作者

Park, Woojin, Chang, Seunghyuk, Lim, Jae Hyuk, Lee, Sunwoo, Ahn, Hojae, Kim, Yunjong, Kim, Sanghyuk, Hammar, Arvid, Jeong, Byeongjoon, Kim, Geon Hee, Lee, Hyoungkwon, Kim, Dae Wook, Pak, Soojong

论文摘要

我们介绍了无线性散光的发展 - 三镜系统(LAF -TMS)。这是远轴望远镜的原型,它可以启用非常广泛的视野(FOV)红外卫星,可以观察到Paschen-$α$发射,Zodiacal Light,Zodiacal Light,Integrated Star Light和其他红外资源。它的入口瞳孔直径为150毫米,焦距为500毫米,而FOV为5.5 $^\ circ $ $ \ times $ 4.1 $^\ circ $。 LAF-TMS是一种无晦涩的外轴系统,具有最小的场外障碍,没有光学支撑结构衍射。该光学设计经过分析优化,以消除线性散光并减少高阶畸变。灵敏度分析和蒙特卡洛模拟表明,倾斜错误是允许$ \ sim $ 1 $^\ prime $的最敏感的对齐参数。光力结构准确地安装了铝制镜子,并承受卫星级振动环境。 LAF-TMS显示了点源图像的37 $μ$ M FWHM的光学性能,满足了典型的18 $ $ M $ M PIXEL红外阵列检测器的Nyquist采样要求。具有4.9 nm表面微粗糙度的三级镜子的镜子和散射光的表面图误差可能会影响测得的点扩散功能(PSF)。光学测试成功地证明了在宽FOV上的恒定光学性能,表明LAF-TMS抑制了线性散光和高阶畸变。

We present the development of Linear Astigmatism Free - Three Mirror System (LAF-TMS). This is a prototype of an off-axis telescope that enables very wide field of view (FoV) infrared satellites that can observe Paschen-$α$ emission, zodiacal light, integrated star light, and other infrared sources. It has the entrance pupil diameter of 150 mm, the focal length of 500 mm, and the FoV of 5.5$^\circ$ $\times$ 4.1$^\circ$. LAF-TMS is an obscuration-free off-axis system with minimal out-of-field baffling and no optical support structure diffraction. This optical design is analytically optimized to remove linear astigmatism and to reduce high-order aberrations. Sensitivity analysis and Monte-Carlo simulation reveal that tilt errors are the most sensitive alignment parameters that allow $\sim$1$^\prime$. Optomechanical structure accurately mounts aluminum mirrors, and withstands satellite-level vibration environments. LAF-TMS shows optical performance with 37 $μ$m FWHM of the point source image satisfying Nyquist sampling requirements for typical 18 $μ$m pixel Infrared array detectors. The surface figure errors of mirrors and scattered light from the tertiary mirror with 4.9 nm surface micro roughness may affect the measured point spread function (PSF). Optical tests successfully demonstrate constant optical performance over wide FoV, indicating that LAF-TMS suppresses linear astigmatism and high-order aberrations.

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