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NASA's Physics of the Cosmos and Cosmic Origins Programs Manage Strategic Astrophysics Technology (SAT) Development

机译:美国宇航局的宇宙和宇宙起源计划的物理管理战略天体物理技术(SAT)发展

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The strategic astrophysics missions of the coming decades will help answer the questions "How did our universe begin and evolve?" "How did galaxies, stars, and planets come to be?" and "Are we alone?" Enabling these missions requires advances in key technologies far beyond the current state of the art. NASA's Physics of the Cosmos~2 (PCOS), Cosmic Origins~3 (COR), and Exoplanet Exploration Program~4 (ExEP) Program Offices manage technology maturation projects funded through the Strategic Astrophysics Technology (SAT) program to accomplish such advances. The PCOS and COR Program Offices, residing at the NASA Goddard Space Flight Center (GSFC), were established in 2011, and serve as the implementation arm for the Astrophysics Division at NASA Headquarters. We present an overview of the Programs' technology development activities and the current technology investment portfolio of 23 technology advancements. We discuss the process for addressing community-provided technology gaps and Technology Management Board (TMB)-vetted prioritization and investment recommendations that inform the SAT program. The process improves the transparency and relevance of our technology investments, provides the community a voice in the process, and promotes targeted external technology investments by defining needs and identifying customers. The Programs' priorities are driven by strategic direction from the Astrophysics Division, which is informed by the National Research Council's (NRC) "New Worlds, New Horizons in Astronomy and Astrophysics" (NWNH) 2010 Decadal Survey report [1], the Astrophysics Implementation Plan (AIP) [2] as updated, and the Astrophysics Roadmap "Enduring Quests, Daring Visions" [3]. These priorities include technology development for missions to study dark energy, gravitational waves, X-ray and inflation probe science, and large far-infrared (IR) and ultraviolet (UV)/optical/IR telescopes to conduct imaging and spectroscopy studies. The SAT program is the Astrophysics Division's main investment method to mature technologies that will be identified by study teams set up to inform the 2020 Decadal Survey process on several large astrophysics mission concepts.
机译:未来几十年的战略天体物理学任务将有助于回答“我们的宇宙是如何开始和进化的?” “星系,星星和行星是如何成为的?” “我们独自一人吗?”使这些任务能够在远远超出现有技术的关键技术方面的进步。美国宇航局的宇宙物理〜2(PCOS),宇宙起源〜3(COR)和外延勘探计划〜4(exep)计划办公室通过战略天体物理技术(SAT)计划提供资金的技术成熟项目,实现此类进展。居住在美国宇航局戈达德太空飞行中心(GSFC)的PCOS和COR计划办公室成立于2011年,并作为NASA总部的天体物理学划分的实施手臂。我们概述了计划的技术开发活动和23种技术进步的现行技术投资组合。我们讨论了解社区提供的技术差距和技术管理委员会(TMB)的过程(TMB), - 通知SAT计划的优先级和投资建议。该过程提高了我们技术投资的透明度和相关性,在该社区提供了该过程中的声音,并通过定义需求和识别客户来促进有针对性的外部技术投资。这些计划的优先事项是由国家研究理事会(NRC)“新世界”(NWNH)新世界的新世界(NWNH)2010年Decadal调查报告[1],Astrophysics实施方式推动的战略方向计划(AIP)[2]更新,天体物理路线图“持久任务,大胆的愿景”[3]。这些优先事项包括用于研究暗能量,引力波,X射线和通胀探针科学以及大型远红外(IR)和紫外线(UV)/ IR望远镜进行成像和光谱研究的特派团的技术开发。 SAT计划是Astrophysics Distrace的主要投资方法,即将通过研究团队确定的成熟技术,以告知2020年的几个大型天体物理使团概念。

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