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Evidence for early stellar encounters in the orbital distribution of Edgeworth-Kuiper Belt objects

机译:Edgeworth-Kuiper带天体轨道分布中早期恒星相遇的证据

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摘要

We have investigated effects of early stellar encounters on a protoplanetary disk (planetesimal disk) and found that they can explain the high eccentricities and inclinations observed in the outer part ($>42$AU) of the Edgeworth-Kuiper Belt (EKB). The proto-sun is considered as a member of a stellar aggregation that undergoes dissolution on a timescale $\sim 10^8$yrs, such that a planetesimal disk experiences a flyby encounter at pericenter distance ($q$) on the order of 100AU. We simulated dynamical evolution of a planetesimal (test particle) disk perturbed by a passing star. We show that the stellar encounter pumps the velocity dispersion in the disk in the outer parts ($> 0.25q$). Planet formation is forestalled in that region. We also find that a stellar encounter with pericenter distance $q \sim 100-200$AU could have pumped up the velocity dispersion of EKB objects outside 42AU to the observed magnitude while preserving that inside Neptune's 3:2 mean-motion resonance (located at 39.5AU), which allows for the efficient capture of objects by the sweeping of the 3:2 resonance during orbital migration by proto-Neptune.
机译:我们研究了初恒星相遇对原行星盘(行星盘)的影响,发现它们可以解释Edgeworth-Kuiper带(EKB)外部($> 42 $ AU)中观察到的高偏心率和倾斜度。原始太阳被认为是恒星聚集体的成员,该恒星聚集体在时间尺度$ \ sim 10 ^ 8 $ yrs上经历解散,因此,一个小行星盘在中心点距离($ q $)上经历一次飞越遭遇,约100AU 。我们模拟了一颗经过恒星扰动的小行星(测试粒子)盘的动态演化。我们显示,恒星遇到泵在外部部分的磁盘中的速度分散($> 0.25q $)。该地区阻止了行星的形成。我们还发现恒星距离为$ q \ sim 100-200 $ AU的恒星相遇可能会将42AU以外的EKB对象的速度色散提升至观测到的幅度,同时保留了海王星3:2平均运动共振(位于39.5AU),通过在原海王星的轨道迁移过程中扫掠3:2共振来有效捕获物体。

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