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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >Space-based research in fundamental physics and quantum technologies
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Space-based research in fundamental physics and quantum technologies

机译:基础物理学和量子技术的天基研究

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摘要

Space offers unique experimental conditions and a wide range of opportunities to explore the foundations of modern physics with an accuracy far beyond that of ground-based experiments. Space-based experiments today can uniquely address important questions related to the fundamental laws of Nature. In particular, high-accuracy physics experiments in space can test relativistic gravity and probe the physics beyond the Standard Model; they can perform direct detection of gravitational waves and are naturally suited for investigations in precision cosmology and astroparticle physics. In addition, atomic physics has recently shown substantial progress in the development of optical clocks and atom interferometers. If placed in space, these instruments could turn into powerful high-resolution quantum sensors greatly benefiting fundamental physics. We discuss the current status of space-based research in fundamental physics, its discovery potential, and its importance for modern science. We offer a set of recommendations to be considered by the upcoming National Academy of Sciences' Decadal Survey in Astronomy and Astrophysics. In our opinion, the Decadal Survey should include space-based research in fundamental physics as one of its focus areas. We recommend establishing an Astronomy and Astrophysics Advisory Committee's interagency "Fundamental Physics Task Force" to assess the status of both ground- and space-based efforts in the field, to identify the most important objectives, and to suggest the best ways to organize the work of several federal agencies involved. We also recommend establishing a new NASA-led interagency program in fundamental physics that will consolidate new technologies, prepare key instruments for future space missions, and build a strong scientific and engineering community. Our goal is to expand NASA's science objectives in space by including "laboratory research in fundamental physics" as an element in the agency's ongoing space research efforts.
机译:太空提供了独特的实验条件,并提供了广泛的机会来探索现代物理学的基础,其准确性远远超过了地面实验的准确性。今天的天基实验可以独特地解决与自然基本定律有关的重要问题。特别是,在太空中进行的高精度物理实验可以测试相对论引力,并可以探测超出标准模型的物理场;它们可以直接检测引力波,自然适合进行精密宇宙学和天体物理学的研究。另外,原子物理学最近在光学时钟和原子干涉仪的开发中显示出实质性的进步。如果放置在太空中,这些仪器可能会变成功能强大的高分辨率量子传感器,从而极大地受益于基础物理学。我们讨论了天基研究在基础物理学中的现状,其发现潜力以及对现代科学的重要性。我们提供了一系列建议,供即将到来的美国国家科学院的天文学与天体物理学十年调查研究使用。我们认为,十年调查应将基础物理学中的空基研究作为其重点领域之一。我们建议建立一个天文学和天体物理学咨询委员会的跨部门“基础物理学工作组”,以评估该领域地面和空间工作的现状,确定最重要的目标,并提出组织工作的最佳方法涉及的几个联邦机构。我们还建议建立一个新的由NASA领导的基础物理学跨部门计划,该计划将整合新技术,为未来的太空飞行做准备关键仪器,并建立强大的科学和工程界。我们的目标是通过将“基础物理学实验室研究”纳入该机构正在进行的太空研究工作,从而扩大NASA在太空中的科学目标。

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