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Deployable near-net-shaped membrane optics

机译:可展开的近网形薄膜光学元件

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Abstract: The Air Force Research Laboratory is developing a large space-based optical membrane telescope. When this research began a little more than three years ago, the conceptual design was based upon a totally inflatable structure. An inflatable structure has been used for space solar power collection and radio-frequency antennas. To place the development of the membrane optical telescope in perspective, a short history of past inflatables will be presented. The totally inflatable lenticular design used in a variety of space-based applications in radio and radar antennae, solar power for propulsion applications and solar shields is of particular interest. Recently, a new version of a membrane telescope has emerged. Thin membranes on the order of 10 to 100 $mu@m thick will be packaged and deployed without using inflation to maintain the surface figure. The move away from a pure inflatable is driven by several factors, including wavelength-level tolerances required of optical telescopes, even when real-time holography is invoked as the adaptive optics correction technique. Issues that led us to de-emphasize an inflatable, lenticular design and concentrate on a near-net shape film using stress coatings and dual boundary edge control are discussed.!12
机译:摘要:空军研究实验室正在开发大型天基光学薄膜望远镜。当这项研究在三年前开始时,概念设计是基于完全可充气的结构。充气结构已经用于太空太阳能收集和射频天线。为了透视薄膜光学望远镜的发展,将简要介绍过去的充气设备的历史。特别令人感兴趣的是,在无线电和雷达天线,用于推进应用的太阳能和各种太阳盾的各种天基应用中使用的完全可充气的双凸透镜设计。最近,出现了新版本的薄膜望远镜。厚度为10至100μm@ m的薄膜将被包装和展开,而无需使用充气来保持表面形状。远离纯充气设备的驱动是由多种因素驱动的,包括光学望远镜所需的波长级公差,即使实时全息术被用作自适应光学校正技术也是如此。讨论了导致我们不再强调充气式双凸透镜设计并专注于使用应力涂层和双重边界边缘控制的近净形薄膜的问题!12

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