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首页> 外文期刊>Icarus: International Journal of Solar System Studies >The intrinsic Neptune Trojan orbit distribution: Implications for the primordial disk and planet migration
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The intrinsic Neptune Trojan orbit distribution: Implications for the primordial disk and planet migration

机译:海王星特洛伊木马的固有轨道分布:对原始盘和行星迁移的影响

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摘要

The present-day orbit distribution of the Neptune Trojans is a powerful probe of the dynamical environment of the outer Solar System during the late stages of planet migration. In this work, I conservatively debias the inclination, eccentricity, and libration amplitude distributions of the Neptune Trojans by reducing a priori unknown discovery and follow-up survey properties to nuisance parameters and using a likelihood-free Bayesian rejection sampler for parameter estimation. Using this survey-agnostic approach, I confirm that the Neptune Trojans are a dynamically excited population: at >95% confidence, the Neptune Trojans' inclination width must be sigma(i) > 11 degrees. For comparison and motivation purposes, I also model the Jupiter Trojan orbit distributions in the same basis and produce new estimates of their parameters (Jupiter Trojan sigma(1), = 14.4 degrees +/- 0.5 degrees, sigma(L11) = 11.8 degrees +/- 0.5 degrees, and sigma(e) = 0.061 +/- 0.002). The debiased inclination, libration amplitude, and eccentricity distributions of the Neptune Trojans are nominally very similar to those of the Jupiter Trojans. I use these new constraints to inform a suite of simulations of Neptune Trojan capture by an eccentric, rapidly-migrating Neptune from an initially dynamically-hot disk. These simulations demonstrate that if migration and eccentricity-damping timescales were short (tau(a) less than or similar to 10 Myr, tau(e) less than or similar to 1 Myr), the disk that Neptune migrated into must have been pre-heated (prior to Neptune's appearance) to a width comparable to the Neptune Trojans' extant width to produce a captured population with an inclination distribution width consistent with that of the observed population. (C) 2014 Elsevier Inc. All rights reserved.
机译:海王星木马的当今轨道分布是行星迁移后期阶段太阳系外部动力环境的有力探索。在这项工作中,我通过减少先验未知发现和后续调查属性对扰民参数的影响,并使用无似然贝叶斯拒绝采样器进行参数估计,从而保守地消除了海王星特洛伊木马的倾斜度,偏心率和解放幅度分布。使用这种与调查无关的方法,我确认了Neptune木马是一个动态激发的种群:在> 95%的置信度下,Neptune木马的倾斜宽度必须为sigma(i)> 11度。出于比较和动机目的,我还在相同的基础上对木星特洛伊木马轨道分布进行建模,并对其参数进行了新的估算(木星特洛伊木马sigma(1),= 14.4度+/- 0.5度,sigma(L11)= 11.8度+ /-0.5度,和sigma(e)= 0.061 +/- 0.002)。海王星特洛伊木马的偏斜度,解放幅度和离心率分布名义上与木星特洛伊木马非常相似。我使用这些新的约束条件,通过一个偏心的,从最初动态热的磁盘快速迁移的Neptune来对Neptune Trojan捕获进行一系列模拟。这些模拟表明,如果迁移和偏心阻尼时间尺度很短(tau(a)小于或等于10 Myr,tau(e)小于或类似于1 Myr),则海王星迁移到的磁盘必须预先加热(在海王星出现之前)到与海王星特洛伊木马的现有宽度相当的宽度,以产生捕获的种群,其倾斜分布宽度与观察到的种群的倾斜度宽度一致。 (C)2014 Elsevier Inc.保留所有权利。

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