论文标题

外部气体的垂直演化:I。垂直扩散如何缩短CO寿命

Vertical evolution of exocometary gas: I. How vertical diffusion shortens the CO lifetime

论文作者

Marino, S., Cataldi, G., Jankovic, M. R., Matrà, L., Wyatt, M. C.

论文摘要

明亮的碎屑盘可能包含大量的CO气体。直到最近证明它可以在挥发性丰富的固体碰撞中释放,这种气体被认为是一种原月球残余。随着CO的释放,星际紫外线辐射光解离子CO产生CI,该CI可以屏蔽CO允许大量CO堆积。但是,这张图片受到挑战,因为如果CO和CI垂直混合,CI在屏蔽方面效率低下。在这里,我们首次研究气体的垂直演变,以确定垂直混合如何影响CI屏蔽的效率。我们提出了一个1D模型,该模型解释了由于湍流扩散而引起的气体释放,光解相关,电离,粘性进化和垂直混合。我们发现,如果气体表面密度很高,并且垂直扩散弱($α_ {\ rm V}/α<[h/r]^2 $)CO光解离在中平面上方,形成了光学较厚的CI层,从而屏蔽了CO下方。相反,如果扩散很强($α_ {\ rm v}/α> [h/r]^2 $)CI和CO变得充分混合,从而缩短了CO寿命。此外,扩散还可以限制灰尘沉降的量。高分辨率的ALMA观测可以解析CO和CI的垂直分布,从而限制垂直混合以及CI屏蔽的效率。我们还发现,CO和CI尺度的高度可能不是平均分子量重量的良好探针,因此可能是气体组成的探针。最后,我们表明,如果混合浓烈,则CO寿命可能不足以使CO将内部扩散到产生气体的行星带。

Bright debris discs can contain large amounts of CO gas. This gas was thought to be a protoplanetary remnant until it was recently shown that it could be released in collisions of volatile-rich solids. As CO is released, interstellar UV radiation photodissociates CO producing CI, which can shield CO allowing a large CO mass to accumulate. However, this picture was challenged because CI is inefficient at shielding if CO and CI are vertically mixed. Here, we study for the first time the vertical evolution of gas to determine how vertical mixing affects the efficiency of shielding by CI. We present a 1D model that accounts for gas release, photodissociation, ionisation, viscous evolution, and vertical mixing due to turbulent diffusion. We find that if the gas surface density is high and the vertical diffusion weak ($α_{\rm v}/α<[H/r]^2$) CO photodissociates high above the midplane, forming an optically thick CI layer that shields the CO underneath. Conversely, if diffusion is strong ($α_{\rm v}/α>[H/r]^2$) CI and CO become well mixed, shortening the CO lifetime. Moreover, diffusion could also limit the amount of dust settling. High-resolution ALMA observations could resolve the vertical distribution of CO and CI, and thus constrain vertical mixing and the efficiency of CI shielding. We also find that the CO and CI scale heights may not be good probes of the mean molecular weight, and thus composition, of the gas. Finally, we show that if mixing is strong the CO lifetime might not be long enough for CO to spread interior to the planetesimal belt where gas is produced.

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