首页> 外文期刊>The Astrophysical journal >CIRCUMBINARY PLANET FORMATION IN THE KEPLER-16 SYSTEM. II. A TOY MODEL FOR IN SITU PLANET FORMATION WITHIN A DEBRIS BELT
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CIRCUMBINARY PLANET FORMATION IN THE KEPLER-16 SYSTEM. II. A TOY MODEL FOR IN SITU PLANET FORMATION WITHIN A DEBRIS BELT

机译:KEPLER-16系统中的环形行星形成。二。碎屑带内原位行星形成的玩具模型

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Recent simulations have shown that the formation of planets in circumbinary configurations (such as those recently discovered by Kepler) is dramatically hindered at the planetesimal accretion stage. The combined action of the binary and the protoplanetary disk acts to raise impact velocities between kilometer-sized planetesimals beyond their destruction threshold, halting planet formation within at least 10?AU from the binary. It has been proposed that a primordial population of "large" planetesimals (100?km or more in size), as produced by turbulent concentration mechanisms, would be able to bypass this bottleneck; however, it is not clear whether these processes are viable in the highly perturbed circumbinary environments. We perform two-dimensional hydrodynamical and N-body simulations to show that kilometer-sized planetesimals and collisional debris can drift and be trapped in a belt close to the central binary. Within this belt, planetesimals could initially grow by accreting debris, ultimately becoming "indestructible" seeds that can accrete other planetesimals in situ despite the large impact speeds. We find that large, indestructible planetesimals can be formed close to the central binary within 105 yr, therefore showing that even a primordial population of "small" planetesimals can feasibly form a planet.
机译:最近的模拟表明,在小行星的增生阶段,行星状构造(如开普勒最近发现的行星)的形成受到显着阻碍。双星盘和原行星盘的共同作用是使千米大小的小行星之间的撞击速度提高到超过其破坏极限,从而使行星的形成距双星盘至少10?AU以内。有人提出,由湍流集中机制产生的原始的“大型”天体种群(大小为100?km或更大)可以绕过这个瓶颈。然而,尚不清楚这些过程在高度扰动的周围环境中是否可行。我们进行了二维流体动力学和N体模拟,结果表明,千米大小的小行星和碰撞碎片可能会漂移并被困在靠近中央双星的带中。在该带内,小行星最初可以通过吸收碎片来生长,最终成为“坚不可摧”的种子,尽管撞击速度很大,但它们仍可以原位吸收其他小行星。我们发现,在105年内可以在靠近中心二元数的位置形成大的,不可破坏的小行星,因此表明即使是“小”小行星的原始种群也可以可行地形成一个行星。

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