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Ground-based testing and demonstrations of starshades

机译:星状阴影的地面测试和演示

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The direct detection and characterization of an Earth-like exoplanet is of the highest scientific priority and a leading technology that will enable such discovery is the starshade external occulter. We report on the latest results in ground-based efforts for demonstrating and advancing the technology of starshades. Using the McMath-Pierce Solar Telescope at the Kitt Peak National Observatory, we are able to track stars as they move across the night sky and stabilize a beam of starlight behind a starshade. This has allowed us to conduct the first astronomical observations achieving high-contrast with starshades. In our latest efforts, we have extended the separation between the starshade and telescope to reach an inner working angle of 10 arcseconds at a flight-like Presnel number and resolution. In this report, we detail the development of a closed-loop feedback system to further stabilize the beam at the extended baseline and provide results on the contrast achieved. We conclude by laying out future work to design a dedicated siderostat-starshade facility for future testing of and observations with starshades. Our main result: we achieved a broadband contrast ratio of3.2 × 10~(-5) at 15 arcseconds IWA, while at a flight-like Fresnel number and resolution.
机译:直接探测和表征类地球系外行星是科学上的最高优先事项,而使这种发现成为可能的领先技术是外星掩星。我们在地面演示和推广星状阴影技术的最新成果中报告了最新成果。使用Kitt Peak国家天文台的McMath-Pierce太阳望远镜,我们可以追踪恒星在夜空上移动时的恒星,并使恒星束后面的星光稳定。这使我们能够进行第一批天文学观测,从而与星状阴影形成高对比度。在我们的最新努力中,我们扩大了星影和望远镜之间的距离,以类似于飞行的Presnel数和分辨率达到了10弧秒的内部工作角度。在此报告中,我们详细介绍了闭环反馈系统的开发,以进一步将光束稳定在扩展的基线上,并提供所获得对比度的结果。最后,我们将布局未来的工作,以设计专用的恒速恒星-恒星遮光器设施,以便将来对恒星遮光罩进行测试和观测。我们的主要结果是:在IWA 15弧秒时获得了3.2×10〜(-5)的宽带对比度,而在菲涅尔数和分辨率类似飞行的情况下。

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