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Orbital fitting of Fomalhaut b and subsequent interaction with the dust belt

机译:Fomalhaut B的轨道拟合和随后与灰尘带的相互作用

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Fomalhaut harbours a moderately eccentric dust belt with a planet candidate (Fom b) imaged near its inner edge. MCMC-based orbital determination of Fom b shows that the orbit is highly eccentric (e ? 0.9), nearly apsidally aligned with the belt. We study the secular interaction between the planet and the dust ring. We show that only if it is a small mass object,Fom b can perturb the belt without destroying it. But Fom b's perturbing action inevitably drives the belt to high eccentricity and apsidal misalignment. This behaviour is due to the planet's high eccentricity. This dynamical outcome contradicts both observations and orbital determination. We conclude that another, more massive and less eccentric planet (Fom c) is required to dynamically control the belt. We show that Fom b is likely to have been formerly trapped in mean-motion resonance with Fom c and that subsequent eccentricity increase caused it to cross Fom c's orbit and to jump on its present day orbit via a scattering event.
机译:Fomalhaut在其内边缘附近成像的行星候选人(FOM B)竖立一个适度偏心的灰尘带。基于MCMC的FOM B的轨道测定表明轨道高度偏心(E≤0.9),几乎与带子对齐。我们研究了行星和尘埃环之间的世俗互动。我们才表明,只有当它是一个小的质量对象时,FOM B就可以扰乱皮带而不会破坏它。但FOM B的扰动动作不可避免地将皮带驱动到高偏心和持续的未对准。这种行为是由于地球的高偏心率。这种动态结果与观察结果和轨道决定相矛盾。我们得出结论,需要另一个,更大且较少的偏心行星(FOM C)来动态控制带。我们表明FOM B可能已以前陷入了FOM C的平均运动共振,并且随后的偏心率增加使其通过散射事件跨越FOM C的轨道并跳转其当今轨道。

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