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Verifying occulter deployment tolerances as part of NASA's technology development for exoplanet missions

机译:验证Suffulter部署公差作为NASA的EXOPLANET任务的技术开发的一部分

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An external occulter is a satellite employing a large screen, or starshade, that flies in formation with a spaceborne telescope to provide the starlight suppression needed for detecting and characterizing exoplanets. Among the advantages of using an occulter are the broadband allowed for characterization and the removal of light before entering the observatory, greatly relaxing the requirements on the telescope and instrument. In support of NASA's Exoplanet Exploration Program and the Technology Development for Exoplanet Missions (TDEM), we recently completed a 2 year study of the manufacturability and metrology of starshade petals. In this paper we review the results of that successful first TDEM which demonstrated an occulter petal could be built and measured to an accuracy consistent with close to 10-10 contrast. We then present the results of our second TDEM to demonstrate the next critical technology milestone: precision deployment of the central truss and petals to the necessary accuracy. We show the deployment of an existing deployable truss outfitted with four sub-scale petals and a custom designed central hub.
机译:外部场发生的是一种采用大屏幕或紫星的卫星,其与星载望远镜形成的形成,以提供检测和表征产出的星形抑制。在使用场路的优点中,宽带允许表征并在进入天文台之前去除光,大大放松望远镜和仪器的要求。为了支持NASA的EXOPLANET探索计划和外延特派团(TDEM)的技术开发,我们最近完成了2年的Starshade花瓣的可制造能力和计量研究。在本文中,我们审查了第一个TDEM的结果,它可以构建和测量符合接近10-10对比度的准确性。然后,我们展示了我们第二次TDEM的结果,以展示下一个关键技术里程碑:中央桁架和花瓣的精确部署到必要的准确性。我们展示现有的可展开桁架的部署,配备了四个小尺度花瓣和定制设计的中央中心。

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