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首页> 外文期刊>Advances in space research >Chang'e 3 lunar mission and upper limit on stochastic background of gravitational wave around the 0.01 Hz band
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Chang'e 3 lunar mission and upper limit on stochastic background of gravitational wave around the 0.01 Hz band

机译:e娥三号的月球任务和0.01 Hz波段附近引力波随机背景的上限

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摘要

The Doppler tracking data of the Chang'e 3 lunar mission is used to constrain the stochastic background of gravitational wave in cosmology within the 1 mHz to 0.05 Hz frequency band. Our result improves on the upper bound on the energy density of the stochastic background of gravitational wave in the 0.02-0.05 Hz band obtained by the Apollo missions, with the improvement reaching almost one order of magnitude at around 0.05 Hz. Detailed noise analysis of the Doppler tracking data is also presented, with the prospect that these noise sources will be mitigated in future Chinese deep space missions. A feasibility study is also undertaken to understand the scientific capability of the Chang'e 4 mission, due to be launched in 2018, in relation to the stochastic gravitational wave background around 0.01 Hz. The study indicates that the upper bound on the energy density may be further improved by another order of magnitude from the Chang'e 3 mission, which will fill the gap in the frequency band from 0.02 Hz to 0.1 Hz in the foreseeable future.
机译:used娥三号月球任务的多普勒跟踪数据用于将重力波的随机背景限制在1 mHz至0.05 Hz频带内的宇宙学中。我们的结果改善了由阿波罗飞行任务获得的0.02-0.05 Hz频带内的引力波随机本底能量密度的上限,在0.05 Hz左右时,该能量密度几乎提高了一个数量级。还介绍了对多普勒跟踪数据的详细噪声分析,并有望在未来的中国深空任务中减轻这些噪声源。还进行了可行性研究,以了解定于2018年发射的Chang娥四号飞行任务与0.01 Hz附近随机引力波背景有关的科学能力。研究表明,the娥三号飞行任务的能量密度上限可能会再提高一个数量级,这将在可预见的将来填补0.02 Hz至0.1 Hz频段的空白。

著录项

  • 来源
    《Advances in space research 》 |2017年第6期| 1315-1326| 共12页
  • 作者单位

    Science and Technology on Aerospace Flight Dynamics Laboratory, Beijing Aerospace Control Center, Beijing, China,Institute of Applied Mathematics, Morningside Center of Mathematics and LESC, Institute of Computational Mathematics, Academy of Mathematics and System Science, Chinese Academy of Sciences, Beijing, China,Department of Aerospace Guidance Navigation and Control, School of Astronautics, Beihang University, Beijing, China;

    Institute of Applied Mathematics, Morningside Center of Mathematics and LESC, Institute of Computational Mathematics, Academy of Mathematics and System Science, Chinese Academy of Sciences, Beijing, China;

    Science and Technology on Aerospace Flight Dynamics Laboratory, Beijing Aerospace Control Center, Beijing, China;

    Science and Technology on Aerospace Flight Dynamics Laboratory, Beijing Aerospace Control Center, Beijing, China;

    Beijing Institute of Aerospace Control Devices, Beijing, China;

    Science and Technology on Aerospace Flight Dynamics Laboratory, Beijing Aerospace Control Center, Beijing, China;

    Science and Technology on Aerospace Flight Dynamics Laboratory, Beijing Aerospace Control Center, Beijing, China,National Astronomical Observatories, Chinese Academy of Sciences, Beijing, China,University of Chinese Academy of Sciences, Beijing, China;

    Science and Technology on Aerospace Flight Dynamics Laboratory, Beijing Aerospace Control Center, Beijing, China,National Astronomical Observatories, Chinese Academy of Sciences, Beijing, China;

    Institute of Applied Mathematics, Morningside Center of Mathematics and LESC, Institute of Computational Mathematics, Academy of Mathematics and System Science, Chinese Academy of Sciences, Beijing, China;

    National Astronomical Observatories, Chinese Academy of Sciences, Beijing, China,University of Chinese Academy of Sciences, Beijing, China;

    National Astronomical Observatories, Chinese Academy of Sciences, Beijing, China;

    Institute of Applied Mathematics, Morningside Center of Mathematics and LESC, Institute of Computational Mathematics, Academy of Mathematics and System Science, Chinese Academy of Sciences, Beijing, China;

    Science and Technology on Aerospace Flight Dynamics Laboratory, Beijing Aerospace Control Center, Beijing, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Chang'e lunar mission; Doppler tracking data; Stochastic background of gravitational waves;

    机译:e娥月球任务;多普勒跟踪数据;重力波的随机背景;

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