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Testing General Relativity with the Radio Science Experiment of the BepiColombo mission to Mercury

机译:使用BepiColombo探测水星的无线电科学实验测试广义相对论

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The relativity experiment is part of the Mercury Orbiter Radio science Experiment (MORE) on-board the ESA/JAXA BepiColombo mission to Mercury. Thanks to very precise radio tracking from the Earth and accelerometer, it will be possible to perform an accurate test of General Relativity, by constraining a number of post-Newtonian and related parameters with an unprecedented level of accuracy. The Celestial Mechanics Group of the University of Pisa developed a new dedicated software, ORBIT14, to perform the simulations and to determine simultaneously all the parameters of interest within a global least squares fit. After highlighting some critical issues, we report on the results of a full set of simulations, carried out in the most up-to-date mission scenario. For each parameter we discuss the achievable accuracy, in terms of a formal analysis through the covariance matrix and, furthermore, by the introduction of an alternative, more representative, estimation of the errors. We show that, for example, an accuracy of some parts in 10 ? 6 for the Eddington parameter β and of 10 ? 5 for the Nordtvedt parameter η can be attained, while accuracies at the level of 5 × 10 ? 7 and 1 × 10 ? 7 can be achieved for the preferred frames parameters α 1 and α 2 , respectively.
机译:相对论实验是ESA / JAXA BepiColombo登陆水星的水星轨道无线电科学实验(MORE)的一部分。得益于来自地球和加速度计的非常精确的无线电跟踪,通过以前所未有的精度水平约束许多牛顿后及相关参数,将有可能执行广义相对论的精确测试。比萨大学的天体力学小组开发了一种新的专用软件ORBIT14,以执行模拟并同时确定全局最小二乘法拟合中的所有感兴趣的参数。在强调了一些关键问题之后,我们报告了在最新任务场景中进行的全套模拟的结果。对于每个参数,我们将通过协方差矩阵进行形式分析,然后通过引入另一种更具代表性的误差估计来讨论可达到的精度。例如,我们证明了某些零件的精度为10?对于爱丁顿参数β为6,为10?对于Nordtvedt参数η可以达到5,而精度为5×10? 7和1×10?对于优选的帧参数α1和α2可以分别实现图7的处理。

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