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Gravitational Redshift Test Using Eccentric Galileo Satellites

机译:利用偏心伽利略卫星进行引力红移测试

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摘要

We report on a new test of the gravitational redshift and thus of local position invariance, an integral part of the Einstein equivalence principle, which is the foundation of general relativity and all metric theories of gravitation. We use data spanning 1008 days from two satellites of Galileo, Europe's global satellite navigation system, which were launched in 2014, but accidentally delivered on elliptic rather than circular orbits. The resulting modulation of the gravitational redshift of the onboard atomic clocks allows the redshift determination with high accuracy. Additionally, specific laser ranging campaigns to the two satellites have enabled a good estimation of systematic effects related to orbit uncertainties. Together with a careful conservative modeling and control of other systematic effects we measure the fractional deviation of the gravitational redshift from the prediction by general relativity to be (0.19 +/- 2.48) x 10(-5) at 1 sigma, improving the best previous test by a factor 5.6. To our knowledge, this represents the first reported improvement on one of the longest standing results in experimental gravitation, the Gravity Probe A hydrogen maser rocket experiment back in 1976.
机译:我们报告了对引力红移的新测试,从而对局部位置不变性进行了测试,这是爱因斯坦等价原理不可或缺的一部分,这是广义相对论和所有引力度量理论的基础。我们使用2014年发射的欧洲全球卫星导航系统伽利略(Galileo)的两颗卫星跨1008天的数据,但它们是意外地在椭圆轨道而不是圆形轨道上传送的。车载原子钟的引力红移的最终调制允许高精度地确定红移。此外,针对这两个卫星的特定激光测距活动已经使对与轨道不确定性有关的系统影响的良好估计成为可能。加上仔细的保守建模和其他系统效果的控制,我们测量了广义相对论相对于预测的引力红移的分数偏差,该偏差在1 sigma时为(0.19 +/- 2.48)x 10(-5),从而改善了最佳的先前测试系数为5.6。据我们所知,这是对重力实验中最长的一项常设结果进行的首次报道,该重力实验最早是在1976年进行的Gravity Probe A氢质maser火箭实验。

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  • 来源
    《Physical review letters》 |2018年第23期|231101.1-231101.6|共6页
  • 作者单位

    Sorbonne Univ, Univ PSL, Observ Paris, SYRTE,CNRS,LNE, 61 Ave Observ, F-75014 Paris, France;

    Sorbonne Univ, Univ PSL, Observ Paris, SYRTE,CNRS,LNE, 61 Ave Observ, F-75014 Paris, France|Dept Astron & Astrofis, Edificio Invest Jeronimo Munoz,C Dr Moliner, Burjassot 46100, Valencia, Spain;

    ESOC, ESA, D-64293 Darmstadt, Germany;

    ESOC, ESA, D-64293 Darmstadt, Germany;

    Univ Nice, UMR Geoazur, Observ Cote Azur, 250 Rue A Einstein, F-06560 Valbonne, France;

    Univ Bern, Astron Inst, Sidlerstr 5, CH-3012 Bern, Switzerland;

    European Space & Technol Ctr, ESA, Estec, NL-2200 AG Noordwijk, Netherlands;

    Sorbonne Univ, Univ PSL, Observ Paris, SYRTE,CNRS,LNE, 61 Ave Observ, F-75014 Paris, France;

    Sorbonne Univ, Univ PSL, Observ Paris, SYRTE,CNRS,LNE, 61 Ave Observ, F-75014 Paris, France;

    Sorbonne Univ, Univ PSL, Observ Paris, SYRTE,CNRS,LNE, 61 Ave Observ, F-75014 Paris, France;

    European Space & Technol Ctr, ESA, Estec, NL-2200 AG Noordwijk, Netherlands;

    Sorbonne Univ, Univ PSL, Observ Paris, SYRTE,CNRS,LNE, 61 Ave Observ, F-75014 Paris, France;

    ESAC, ESA, Villanueva De La Canada 28692, Spain;

    Sorbonne Univ, Univ PSL, Observ Paris, SYRTE,CNRS,LNE, 61 Ave Observ, F-75014 Paris, France;

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