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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >The Lense-Thirring effect in the Jovian system of the Galilean satellites and its measurability
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The Lense-Thirring effect in the Jovian system of the Galilean satellites and its measurability

机译:伽利略卫星的木星系统中的三次刺激效应及其可测量性。

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We investigate the possibility of measuring the post-Newtonian general relativistic gravitomagnetic Lense-Thirring effect in the Jovian system of its Galilean satellites Io, Europa, Ganymede and Callisto in view of recent developments in processing and modeling their optical observations spanning a large time interval (125 years). The present day best observations have an accuracy between several kilometers to few tens of kilometers, which is just the order of magnitude of the Lense-Thirring shifts of the orbits of the Galilean satellites over almost a century. From a comparison between analytical development and numerical integration it turns out that, unfortunately, most of the secular component of the gravitomagnetic signature is removed in the process of fitting the initial conditions. Indeed, an estimation of the magnitude of the Lense-Thirring effect in the ephemerides residuals is given; the resulting residuals have a maximum magnitude of 20 meters only (over 125 years).
机译:考虑到处理和建模跨大时间间隔的光学观测的最新进展,我们调查了在其伽利略卫星Io,Europa,Ganymede和Callisto的木星系统中测量牛顿后广义相对论引力Lense-Thirring效应的可能性( 125年)。当今最好的观测结果的精确度在几公里到几十公里之间,仅是近一个世纪以来伽利略卫星轨道的Lense-Thirring移位的数量级。从分析发展与数值积分之间的比较可以看出,不幸的是,在满足初始条件的过程中,大部分地磁特征的长期成分被去除了。实际上,给出了星历表残差中Lense-Thirring效应的大小的估计;所产生的残差最大幅度仅为20米(超过125年)。

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