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Numerical Modelling of Satellite Downlink Signals in a Finslerian-Perturbed Schwarzschild Spacetime

机译:翼型杂交施瓦茨柴尔兹柴泥时期卫星下行链路信号的数值建模

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The work presented in this paper aims to contribute to the problem of testing Finsler gravity theories by means of experiments and observations in the solar system. Within a class of spherically symmetric static Finsler spacetimes we consider a satellite with an on-board atomic clock, orbiting in the Finslerian-perturbed gravitational field of the earth, whose time signal is transmitted to a ground station, where its receive time and frequency are measured with respect to another atomic clock. This configuration is realized by the Galileo 5 and 6 satellites that have gone astray and are now on non-circular orbits. Our method consists in the numerical integration of the satellite’s orbit, followed by an iterative procedure which provides the numerically integrated signals, i.e., null geodesics, from the satellite to the ground station. One of our main findings is that for orbits that are considerably more eccentric than the Galileo 5 and 6 satellite orbits, Finslerian effects can be separated from effects of perturbations of the Schwarzschild spacetime within the Lorentzian geometry. We also discuss the separation from effects of non-gravitational perturbations. This leads us to the conclusion that observations of this kind combined with appropriate numerical modelling can provide suitable tests of Finslerian modifications of general relativity.
机译:本文提出的工作旨在通过在太阳系中的实验和观察结果中有助于测试Finsler重力理论的问题。在一类球形对称的静态Finsler时刻,我们考虑一个带有车载原子时钟的卫星,在地球的芬德勒扰动的重力场中轨道,其时间信号被传输到地面站,其接收时间和频率相对于另一个原子钟测量。这种配置由伽利略5和6颗卫星实现,该卫星已经误入歧途,现在在非圆形轨道上。我们的方法包括卫星轨道的数值集成,然后是迭代过程,其提供从卫星到地面站的数字集成信号,即NULL Geodesics,即Null Geodsics。我们的主要发现之一是,对于比伽利略5和6卫星轨道相当古怪的轨道,芬兰效果可以与洛伦兹几何形状内的Schwarzschild时空的扰动的影响分开。我们还讨论了非引力扰动的影响的分离。这导致我们得出结论,这种与适当数值模拟的观察结合可以提供适当的一般相对性修改的特殊测试。

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