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The Influence of Planet Nine on the Orbits of Distant TNOs: The Case for a Lowperihelion Planet

机译:九号行星对遥远TNOs轨道的影响:低近日点行星的情况

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The hypothesis of an additional planet in the outer solar system has gained new support as a result of the confinement noted in the angular orbital elements of distant trans-Neptunian objects. Orbital parameters proposed for the external perturber suggest semimajor axes between 500 and 1000 au, perihelion distances between 200 and 400 au for masses between 10 and 20M⊕. In this paper, we study the possibility that lower perihelion distances for the additional planet can lead to angular confinements as observed in the population of objects with semimajor axes greater than 250 au and perihelion distances higher than 40 au. We performed numerical integrations of a set of particles subjected to the influence of the Sun, the known giant planets, and the putative perturber during the age of the solar system and compared our outputs with the observed population through a statistical analysis. Our investigations showed that lower perihelion distances from the outer planet usually lead to more substantial confinements than higher ones, while retaining the Classical Kuiper Belt as well as the ratio of the number of detached with perihelion distances higher than 42 au to scattering objects in the range of semimajor axes from 100 to 200 au.
机译:由于遥远的海王星天体的角轨道元素存在局限性,外太阳系中额外行星的假说得到了新的支持。为外部扰动器建议的轨道参数表明,质量为10至20M⊕的半长轴在500至1000 au之间,近日点距离在200至400 au之间。在本文中,我们研究了这样的可能性,即在长轴大于250 au且近日点距离大于40 au的物体中观察到的情况,附加行星的近日点距离较低会导致角度限制。我们对一组粒子进行了数值积分,这些粒子在太阳系时代受到了太阳,已知的巨型行星和推定的扰动的影响,并将我们的输出与观察到的种群进行了统计分析。我们的研究表明,与外层行星相比,与外层行星的距离较小,通常导致更严格的约束,同时保留了经典的柯伊伯带,以及远轴距离大于42 au的分离的物体与该范围内散射物体的比率从100到200 au的半长轴。

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