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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >Probing space - Time in the solar system: From Cassini to BepiColombo
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Probing space - Time in the solar system: From Cassini to BepiColombo

机译:探测空间-太阳系中的时间:从卡西尼号到BepiColombo

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摘要

Spacecraft radio science techniques can be used for precision solar system tests of relativistic gravity, as was demonstrated by the measurement of the Doppler shift of radio signals with the Cassini mission. Similar experiments are planned for the BepiColombo mission to Mercury. Recent theoretical developments based on string theory and inflationary cosmologies link the validity of general relativity to the expansion of the Universe and indicate that violations may be within the reach of future, precise experiments. In spite of the uncertainty of the theoretical scenarios, the motivations for further tests of gravitational theories are stronger then ever: string theory, new cosmological observations, the hypotheses of dark matter and dark energy, all point to the need for a new and more profound understanding of the Universe and its laws, including the laws of gravity. This paper describes experiments for probing space-time in the solar system with the Cassini and BepiColombo missions, and discusses the experimental limitations of microwave systems used for these tests, including attitude motion and nongravitational accelerations of the spacecraft, propagation noise, and mechanical noise of ground antenna.
机译:航天器无线电科学技术可用于相对论引力的精确太阳系测试,这是通过卡西尼号任务对无线电信号多普勒频移的测量证明的。计划对BepiColombo的水星飞行任务进行类似的实验。基于弦论和通货膨胀宇宙学的最新理论发展将广义相对论的有效性与宇宙的膨胀联系在一起,并表明违法行为可能在未来的精确实验范围之内。尽管理论上存在不确定性,但对引力理论进行进一步检验的动机却比以往任何时候都强:弦论,新的宇宙学观察,暗物质和暗能量的假设,都表明需要一种新的,更深刻的理论。了解宇宙及其定律,包括引力定律。本文介绍了用卡西尼号和BepiColombo任务探测太阳系中的时空的实验,并讨论了用于这些测试的微波系统的实验局限性,包括航天器的姿态运动和非重力加速度,传播噪声和机械噪声。接地天线。

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