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A PRELIMINARY JUPITER MODEL

机译:初步的朱庇特模型

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In anticipation of new observational results for Jupiter's axial moment of inertia and gravitational zonal harmonic coefficients from the forthcoming Juno orbiter, we present a number of preliminary Jupiter interior models. We combine results from ab initio computer simulations of hydrogen–helium mixtures, including immiscibility calculations, with a new nonperturbative calculation of Jupiter's zonal harmonic coefficients, to derive a self-consistent model for the planet's external gravity and moment of inertia. We assume helium rain modified the interior temperature and composition profiles. Our calculation predicts zonal harmonic values to which measurements can be compared. Although some models fit the observed (pre-Juno) second- and fourth-order zonal harmonics to within their error bars, our preferred reference model predicts a fourth-order zonal harmonic whose absolute value lies above the pre-Juno error bars. This model has a dense core of about 12 Earth masses and a hydrogen–helium-rich envelope with approximately three times solar metallicity.
机译:为了期待即将面世的朱诺轨道器对木星的轴向惯性矩和重力纬向谐波系数的新观测结果,我们提出了许多初步的木星内部模型。我们将氢-氦混合物从头算计算机模拟的结果(包括不混溶性计算)与木星纬向谐波系数的新非扰动计算相结合,以得出行星外部引力和惯性矩的自洽模型。我们假设氦雨改变了室内温度和成分分布。我们的计算预测了可以与测量值进行比较的纬向谐波值。尽管某些模型将观测到的(Juno前)二阶和四阶纬向谐波拟合到其误差线之内,但我们的首选参考模型预测了绝对值高于Juno前误差线以上的四阶纬向谐波。该模型具有约12个地球质量的致密核心和约3倍太阳金属度的富氢-氦气包壳。

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