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Development of lightweight x-ray mirrors for the Constellation-X mission

机译:用于Constellation-X Mission的轻质X射线镜的开发

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Constellation-X is NASA's next major X-ray astronomical observatory. Its salient features are its very large effective X-ray collecting area (about 30,000 cm2 at 1 keV) and high resolution gratings and cryogenic detector systems. The large mirror effective area presents unique and unprecedented challenges in optical fabrication and metrology. In this paper we report on the development of very lightweight X-ray mirrors that address these challenges. We use a two-step mirror fabrication process: (1) slumping thin (0.4mm) flat glass sheets to generate high quality substrates that may have mid-frequency figure errors, and (2) reducing or eliminating the mid-frequency errors using an epoxy replication process. We discuss problems and the potential associated with each of these two steps. Based on our work to date, we expect that this technology to be able to meet the baseline Constellation-X requirements, i.e, 15" HPD (half-power diameter) at the observatory level. In the next few years, we will further advance this technology and expect it to reach the Constellation-X goal: 5" HPD at the observatory level.
机译:星座-X是美国宇航局的下一个主要的X射线天文台。其突出特点是它的非常大的有效X射线收集区域(约在1千电子伏30000平方厘米)和高分辨率光栅和低温检测器系统。大镜有效面积呈现独特的光学制造和计量前所未有的挑战。在本文中,我们对解决这些挑战非常轻便透视镜的发展报告。我们使用两步镜制造过程:(1)坍落薄(0.4mm间距)平玻璃板以产生可具有中频数字误差高质量的衬底,和(2)减少或消除使用中间频率误差环氧复制过程。我们讨论的问题以及与每个这两个步骤相关的潜力。根据我们迄今所做的工作,我们希望这项技术能够满足天文台水平基线星座-X的要求,即15" HPD(半功率直径)。在未来几年,我们将进一步推进这项技术并期望它到达星座-X的目标:5" HPD天文台水平。

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