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Formation of freely floating sub-stellar objects via close encounters

机译:通过近距离相遇形成自由漂浮的次星体

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Aims. We numerically studied close encounters between a young stellar system hosting a massive, gravitationally fragmenting disk and an intruder diskless star with the aim of determining the evolution of fragments that have formed in the disk prior to the encounter. Methods. Numerical hydrodynamics simulations in the non-inertial frame of reference of the host star were employed to simulate the prograde and retrograde co-planar encounters. The initial configuration of the target system (star plus disk) was obtained via a separate numerical simulation featuring the gravitational collapse of a solar-mass pre-stellar core. Results. We found that close encounters can lead to the ejection of fragments that have formed in the disk of the target prior to collision. In particular, prograde encounters are more efficient in ejecting the fragments than the retrograde encounters. The masses of ejected fragments are in the brown-dwarf mass regime. They also carry away an appreciable amount of gas in their gravitational radius of influence, implying that these objects may possess extended disks or envelopes, as also previously suggested. Close encounters can also lead to the ejection of entire spiral arms, followed by fragmentation and formation of freely-floating objects straddling the planetary mass limit. However, numerical simulations with a higher resolution are needed to confirm this finding.
机译:目的我们通过数值研究了一个年轻的恒星系统与一个巨大的引力碎片盘之间的近距离相遇,目的是确定在碰撞之前在盘中形成的碎片的演化。方法。在宿主星的非惯性参考系中进行数值流体动力学模拟,以模拟前进和后退共面遭遇。目标系统(星盘加星盘)的初始配置是通过一个单独的数值模拟获得的,该数值模拟的特征是太阳质量前恒星核心的重力塌陷。结果。我们发现近距离相遇会导致在碰撞之前弹出目标磁盘中形成的碎片。特别是,逆行遭遇比逆行遭遇更有效地弹出碎片。弹射碎片的质量处于棕矮星质量状态。它们还在其重力影响半径中带走了相当数量的气体,这意味着这些物体可能具有扩展的磁盘或信封,如先前所建议的那样。亲密接触还会导致整个螺旋臂弹出,然后碎片化并形成跨越行星质量极限的自由漂浮物体。但是,需要更高分辨率的数值模拟来证实这一发现。

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