论文标题

H $ _2 $ o HD 100546和HD 163296的光盘中的分布:尘埃动力和行星的作用 - disc互动

H$_2$O distribution in the disc of HD 100546 and HD 163296: the role of dust dynamics and planet--disc interaction

论文作者

Pirovano, L. M., Fedele, D., van Dishoeck, E. F., Hogerheijde, M. R., Lodato, G., Bruderer, S.

论文摘要

[删节]用赫歇尔(Herschel)进行的远红外观察结果表明,在原月经碟片中,冷水储层的丰富程度低落。另一方面,少数圆盘显示在几百个开尔文的温度下激发的热水过渡的发射。特别是,Herbig AE周围的原球盘HD 100546和HD 163296在冷水与热水发射方面显示出相反的趋势:在第一种情况下,检测到基础状态过渡,高J线未被发现,而在HD 163296中则相反,我们在HD 163296中进行了相反的模型。我们发现HD 163296的特征是水丰富的(丰度$ \ gtrsim 10^{ - 5} $)热内盘(在雪地内)和贫乏($ <10^{ - 10} $)外盘:相对丰度可能是由于冰粒粒度迁移而迁移的冰冷粒度可能是由于迁移了所迁移的。值得注意的是,h $ _2 $ o发射区的大小对应于毫米连续体中可见的狭窄尘埃间隙,$ r = 10 \,$ au,$ au与阿尔玛一起。 HD 100546中检测到的低J线意味着在冷外盘中($> 40 $ au)中有几美元的$ 10^{ - 9} $。冷h $ _2 $ o的发射区域在空间上与以前在近红外见过的h $ _2 $ o冰的发射区域相吻合。值得注意的是,用ALMA进行的毫米观察结果揭示了近40至150 au之间存在巨大的尘埃,这很可能是由大型嵌入的原始球星张开的。在这两个碟片中,我们都发现外部区域中的温暖分子层(超出了雪线)是水分子高度耗尽的,这意味着气体的氧气贫乏的化学成分。我们推测,外盘中的气相氧气很容易耗尽,并且其在圆盘中的分布与灰尘晶粒的动力学紧密耦合。

[Abridged] Far-infrared observations with Herschel revealed a surprisingly low abundance of cold-water reservoirs in protoplanetary discs. On the other hand, a handful of discs show emission of hot water transitions excited at temperatures above a few hundred Kelvin. In particular, the protoplanetary discs around the Herbig Ae stars HD 100546 and HD 163296 show opposite trends in terms of cold versus hot water emission: in the first case, the ground-state transitions are detected and the high-J lines are undetected, while the trend is opposite in HD 163296. We performed a spectral analysis using the thermo-chemical model DALI. We find that HD 163296 is characterised by a water-rich (abundance $\gtrsim 10^{-5}$) hot inner disc (within the snowline) and a water-poor ($< 10^{-10}$) outer disc: the relative abundance may be due to the thermal desorption of icy grains that have migrated inward. Remarkably, the size of the H$_2$O emitting region corresponds to a narrow dust gap visible in the millimeter continuum at $r=10\,$au with ALMA. The low-J lines detected in HD 100546 instead imply an abundance of a few $10^{-9}$ in the cold outer disc ($> 40$ au). The emitting region of the cold H$_2$O transitions is spatially coincident with that of the H$_2$O ice previously seen in the near-infrared. Notably, millimetre observations with ALMA reveal the presence of a large dust gap between nearly 40 and 150 au, likely opened by a massive embedded protoplanet. In both discs, we find that the warm molecular layer in the outer region (beyond the snow line) is highly depleted of water molecules, implying an oxygen-poor chemical composition of the gas. We speculate that gas-phase oxygen in the outer disc is readily depleted and its distribution in the disc is tightly coupled to the dynamics of the dust grains.

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