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首页> 外文期刊>General Relativity and Gravitation >HYPER: A Satellite Mission in Fundamental Physics Based on High Precision Atom Interferometry
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HYPER: A Satellite Mission in Fundamental Physics Based on High Precision Atom Interferometry

机译:HYPER:基于高精度原子干涉仪的基本物理卫星任务

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The article presents the HYPER project, a proposal for a satellite mission on precision matter-wave interferometry. For the mission several scientific objectives are under investigation, for which atom interferometers proved on ground to be a true complementary and competitive alternative for classical concepts: The application of atom interferometers as gyroscopes, the measurement of the gravitational acceleration (including tests of the universality of the free fall of atoms) and the precise determination of the fine-structure constant. The paper focuses on the use of cold-atom gyroscopes to map the Lense-Thirring effect close by the Earth and reports on results of recent feasibility studies of the European Space Agency. HYPER requires new concepts of compact, high-resolution matter-wave gyroscopes, which are better adapted to the use in satellite based experiments. The article will give a concise overview of the status and strategies in the field.
机译:本文介绍了HYPER项目,这是一项有关精密物质波干涉测量的卫星任务的建议。为了完成这项任务,正在研究几个科学目标,事实证明,原子干涉仪是经典概念的真正补充和竞争替代品:原子干涉仪作为陀螺仪的应用,重力加速度的测量(包括万有引力的测试)原子的自由下落)和精细结构常数的精确确定。该论文着重介绍了使用冷原子陀螺仪绘制地球附近的Lense-Thirring效应的图,并报告了欧洲航天局最近的可行性研究结果。 HYPER需要紧凑,高分辨率的物质波陀螺仪的新概念,它们更适合在基于卫星的实验中使用。本文将简要概述该领域的现状和策略。

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