论文标题

火星月亮埃弗默里德(Moon Esphemerides)在火星14年后表达数据

Mars moon ephemerides after 14 years of Mars Express data

论文作者

Lainey, V., Pasewaldt, A., Robert, V., Rosenblatt, P., Jaumann, R., Oberst, J., Roatsch, T., Willner, K., Ziese, R., Thuillot, W.

论文摘要

自2004年以来,火星快递(MEX)任务已成功地围绕火星运行。在许多结果中,MEX提供了两个火星卫星(Phobos和Deimos)中一些最准确的星体数据。在这项工作中,我们介绍了MAX SRC数据的所有先前发布的Astretrestric数据中受益的MARS卫星的新临时层。总而言之,包括1877年至2018年的观察以及包括从水手9到MEX的航天器测量值。假设具有同质的内部,我们将Phobos的强制文化幅度与火星潮汐K2/q比率同时拟合,并拟合了卫星的初始状态。我们对物理库1.09 +/- 0.01度的解决方案显着偏离均匀溶液。但是考虑到非常低的误差线,这实际上可能表明有必要考虑将来有更高阶的谐波,并且将来有改进的旋转模型。尽管大多数数据可以成功拟合,但我们发现火星侦察轨道轨道和火星在公里水平上表达天文数据之间存在分歧,这可能与偏置相校正有关。预计在未来几年的菲博斯(Phobos)几百米的水平和数百米的水平上,目前的解决方案精度有望在几百米处。我们的新临时剂的真正准确性必须通过与独立的观察手段对抗来确认。

The Mars Express (MEX) mission has been successfully operated around Mars since 2004. Among many results, MEX has provided some of the most accurate astrometric data of the two Mars moons, Phobos and Deimos. In this work we present new ephemerides of Mars' moons benefitting from all previously published astrometric data to the most recent MEX SRC data. All in all, observations from 1877 until 2018 and including spacecraft measurements from Mariner 9 to MEX were included. Assuming a homogeneous interior, we fitted Phobos' forced libration amplitude simultaneously with the Martian tidal k2/Q ratio and the initial state of the moons. Our solution of the physical libration 1.09 +/- 0.01 degrees deviates notably from the homogeneous solution. But considering the very low error bar, this may essentially suggest the necessity to consider higher order harmonics, with an improved rotation model, in the future. While most data could be successfully fitted, we found a disagreement between the Mars Reconnaissance Orbiter and the Mars Express astrometric data at the kilometer level probably associated with a biased phase correction. The present solution precision is expected at the level of a few hundreds of meters for Phobos and several hundreds of meters for Deimos for the coming years. The real accuracy of our new ephemerides will have to be confirmed by confrontation with independent observational means.

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