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The Orbits of Jupiter’s Irregular Satellites

机译:木星不规则卫星的轨道

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We report on the improved ephemerides for the irregular Jovian satellites. We used a combination of numerically integrated equations of motion and a weighted least-squares algorithm to fit the astrometric measurements. The orbital fits for 59 satellites are summarized in terms of state vectors, post-fit residuals, and mean orbital elements. The current data set appears to be sensitive to the mass of Himalia, which is constrained to the range of GM?=?0.13–0.28 km3 s?2. Here, GM is the product of the Newtonian constant of gravitation, G and the body's mass, M. Our analysis of the orbital uncertainties indicates that 11 out of 59 satellites are lost owing to short data arcs. The lost satellites hold provisional International Astronomical Union (IAU) designations and will likely need to be rediscovered.
机译:我们报告了不规则的木星卫星的改进的星历表。我们使用了运动的数值积分方程和加权最小二乘算法的组合来拟合天体测量。根据状态向量,拟合后残差和平均轨道元素总结了59颗卫星的轨道拟合。当前的数据集似乎对喜玛拉雅山的质量敏感,这被限制在GM?=?0.13-0.28 km3 s?2的范围内。在这里,GM是牛顿引力常数G与人体质量M的乘积。我们对轨道不确定性的分析表明,由于短数据弧,59颗卫星中有11颗丢失了。丢失的卫星拥有临时的国际天文学联合会(IAU)称号,可能需要重新发现。

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