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How Comets Work

机译:彗星如何工作

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摘要

Two major questions regarding comets have been up to now far from any solution. (i) How is it possible that waterice sublimation from the nucleus surface does not lead to an insulating crust, stopping every gas and dust ejection within a few days? (ii) How is it possible that the gas flow crossing the refractory surface crust ejects dust particles bonded by tensile strengths larger than tens of Pa when the perihelion gas pressure at the nucleus-coma interface is less than one Pa? We have developed a simple but rigorous analytical model, assuming that the cometary nucleus consists of agglomerates of ice and dust ("clusters"). As soon as the clusters become exposed to sunlight, gas diffusion from their inside leads to their dehydration. We find that (i) the gas diffusing from the interior to the surface of a sunlit cluster has a steep density gradient at the cluster surface, which blasts the cluster into particles of sizes larger than or equal to those actually observed by Rosetta dust instruments; (ii) the heat-conduction and diffusion timescales are much shorter than the dehydration timescale, ensuring that the described process prevents any dumping of the nucleus activity driven by water-ice sublimation from 4 au inbound to 4 au outbound; and (iii) the clusters are in fact cm-sized pebbles, so that a cometary nucleus made of pebbles is confirmed to be the only one consistent with cometary gas and dust activity, a process unexplained until now.
机译:关于彗星的两个主要问题现在远非从任何解决方案到达。 (i)如何从核表面升华的水域升华不会导致绝缘地壳,在几天内停止每个气体和灰尘喷射? (ii)当核 - 彗孔界面处的透半气压小于一个PA时,如何将耐火材料地壳穿过耐火材料地壳的气流通过抗拉强度的抗拉强度粘合的灰尘颗粒喷射粘合强度。假设冰和灰尘的聚集(“簇”),我们已经开发出简单但严谨的分析模型。一旦群集暴露在阳光下,气体扩散到其内部导致其脱水。我们发现(i)从内部到阳光簇的表面扩散的气体在簇表面处具有陡峭的密度梯度,该簇表面将簇涂在大于或等于Rosetta灰尘仪器的实际观察到的尺寸粒子; (ii)(ii)热传导和扩散时间尺度比脱水时间尺度短得多,确保所述过程阻止由水 - 冰升华驱动的核活动从4个au入口到4个au出站; (iii)簇实际上是CM大小的鹅卵石,使得由鹅卵石制成的组合核被证实是与彗星气体和粉尘活性一致的唯一一个,这是直到现在的过程。

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