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Technologies for large ultra-stable optical missions: current perspectives and developments at ESA

机译:大型超稳定光学任务的技术:ESA的当前观点和发展

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The current trend for higher resolution and sensitivity for Astronomy and Earth Observation space missions is leading to larger entrance apertures for future optical payloads, often requiring challenging and ultra-stable optical performances driving the instrument design and implementation. The level of complexity for such large systems requires a multidisciplinary approach and technological developments in cross-sectorial areas such as optics, structures, pointing accuracy, control, mechanisms... We present here a range of ESA R&D developments related to future large ultra-stable optical instrument architectures, providing perspectives on the identification of enabling technologies in view of current and future optical missions as well as and a wayforward to maturity for implementation within potential future missions.
机译:天文学和地球观测空间任务更高分辨率和敏感性的当前趋势导致未来光学有效载荷的更大的入口孔径,通常需要挑战和超稳定的光学性能驱动仪器设计和实现。这种大型系统的复杂程度需要多学科方法和技术发展,如光学,结构,指示精度,控制,机制等跨扇区区域......我们在这里提供了一系列与未来大超值相关的ESA研发发展。稳定的光学仪器架构,提供关于鉴定鉴于当前和未来的光学任务的能够实现技术的视角,以及在潜在的未来任务中实现成熟的方式。

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