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Spherical Primary Optical Telescope (SPOT): A Cost-effective Space Telescope Architecture

机译:球形主光学望远镜(现货):一种经济高效的空间望远镜架构

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This paper summarizes efforts underway at the Goddard Space Flight Center to demonstrate a new type of space telescope architecture that builds on the rigid, segmented telescope heritage of the James Webb Space Telescope but that solves several key challenges for future space telescopes. The architecture is based on a cost-effective segmented spherical primary mirror combined with a unique wavefront sensing and control system that allows for continuous phasing of the primary mirror. The segmented spherical primary allows for cost-effective 3-meter class (e.g., Midex and Discovery) missions as well as enables 30-meter telescope solutions that can be manufactured in a reasonable amount of time and for a reasonable amount of money. The continuous wavefront sensing and control architecture enables missions in low-earth-orbit and missions that do not require expensive stable structures and thermal control systems. For the 30-meter class applications, the paper discusses considerations for assembling and testing the telescopes in space. The paper also summarizes the scientific and technological roadmap for the architecture and also gives an overview of technology development, design studies, and testbed activities underway to demonstrate its feasibility.
机译:本文总结了戈达德太空飞行中心正在进行的努力,以展示一种新型的空间望远镜架构,这些建筑在詹姆斯韦伯太空望远镜的刚性,分段望远镜遗产上构成,但解决了未来空间望远镜的几个关键挑战。该体系结构基于经济有效的分段球形主镜,与唯一的波前感测和控制系统相结合,允许连续镜像镜像镜的连续相位。分段的球形主要允许具有成本效益的3米(例如,MIDEX和Discovery)任务,并且可以实现30米望远镜解决方案,可以合理地制造合理的时间和合理的金额。连续的波前感应和控制架构使得在低地轨道和任务中的任务使得不需要昂贵的稳定结构和热控制系统。对于30米的阶级应用,本文讨论了在空间中伸缩的组装和测试的考虑因素。本文还总结了该架构的科技路线图,还概述了技术开发,设计研究和经过试验式活动,以证明其可行性。

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