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Ultrastable assembly and integration technology for ground- and space-based optical systems

机译:地基和空基光学系统的超稳定组装和集成技术

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摘要

Optical metrology systems crucially rely on the dimensional stability of the optical path between their individual optical components. We present in this paper a novel adhesive bonding technology for setup of quasi-monolithic systems and compare selected characteristics to the well-established state-of-the-art technique of hydroxide-catalysis bonding. It is demonstrated that within the measurement resolution of our ultraprecise custom heterodyne interferometer, both techniques achieve an equivalent passive path length and tilt stability for time scales between 0.1 mHz and 1 Hz. Furthermore, the robustness of the adhesive bonds against mechanical and thermal inputs has been tested, making this new bonding technique in particular a potential option for interferometric applications in future space missions. The integration process itself is eased by long time scales for alignment, as well as short curing times.
机译:光学计量系统至关重要地依赖于其各个光学组件之间的光路的尺寸稳定性。我们在本文中介绍了一种用于设置准整体系统的新型粘合剂粘合技术,并将所选的特性与已建立的先进的氢氧化物催化粘合技术进行了比较。结果表明,在我们的超精密定制外差式干涉仪的测量分辨率范围内,两种技术均能在0.1 mHz至1 Hz的时间范围内实现等效的无源路径长度和倾斜稳定性。此外,已经测试了粘合剂对机械和热输入的坚固性,这使得这种新的粘合技术尤其成为未来太空任务中干涉测量应用的潜在选择。较长的对准时间规模以及较短的固化时间可简化集成过程。

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