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THE ACTIVE ASTEROIDS

机译:积极的态度

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Some asteroids eject dust, unexpectedly producing transient, comet-like comae and tails. First ascribed to the sublimation of near-surface water ice, mass-losing asteroids (also called "main-belt comets") can in fact be driven by a surprising diversity of mechanisms. In this paper, we consider 11 dynamical asteroids losing mass, in nine of which the ejected material is spatially resolved. We address mechanisms for producing mass loss including rotational instability, impact ejection, electrostatic repulsion, radiation pressure sweeping, dehydration stresses, and thermal fracture, in addition to the sublimation of ice. In two objects (133P and 238P) the repetitive nature of the observed activity leaves ice sublimation as the only reasonable explanation, while in a third ((596) Scheila), a recent impact is the cause. Another impact may account for activity in P/2010 A2, but this tiny object can also be explained as having shed mass after reaching rotational instability. Mass loss from (3200) Phaethon is probably due to cracking or dehydration at extreme (~1000?K) perihelion temperatures, perhaps aided by radiation pressure sweeping. For the other bodies, the mass-loss mechanisms remain unidentified, pending the acquisition of more and better data. While the active asteroid sample size remains small, the evidence for an astonishing diversity of mass-loss processes in these bodies is clear.
机译:一些小行星会喷出灰尘,出乎意料地产生短暂的彗星状彗星和尾巴。质量下降的小行星(也称为“主带彗星”)首先归因于近地表水冰的升华,实际上可以由令人惊讶的各种机制来驱动。在本文中,我们考虑了11个动力小行星的质量损失,其中9个动力小行星在空间上得到分解。除了冰的升华,我们还将解决产生质量损失的机制,包括旋转不稳定性,冲击弹出,静电排斥,辐射压力扫描,脱水应力和热破裂。在两个对象(133P和238P)中,观察到的活动的重复性质使冰升华成为唯一合理的解释,而在第三个对象((596)Scheila)中,最近的影响是原因。另一个影响可能是P / 2010 A2中的活动的原因,但是这个微小的物体也可以解释为达到旋转不稳定性后就脱落了质量。 (3200)Phaethon造成的质量损失可能是由于极端近日点温度(〜1000?K)时的开裂或脱水所致,也许是由于辐射压力波及所致。对于其他机构,质量损失机制仍未确定,有待获得更多更好的数据。尽管活跃的小行星样本数量仍然很小,但这些物体中质量损失过程惊人的多样性的证据是显而易见的。

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