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首页> 外文期刊>Astronomy and astrophysics >High gas-to-dust size ratio indicating efficient radial drift in the mm-faint CX Tauri disk
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High gas-to-dust size ratio indicating efficient radial drift in the mm-faint CX Tauri disk

机译:气尘比高,表明mm-微弱的CX Tauri圆盘有效径向漂移

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摘要

The large majority of protoplanetary disks have very compact continuum emission (?15 AU) at millimeter wavelengths. However, high angular resolution observations that resolve these small disks are still lacking, due to their intrinsically fainter emission compared with large bright disks. In this Letter we present 1.3 mm ALMA data of the faint disk (~10 mJy) orbiting the TTauri star CX Tau at a resolution of ~40 mas, ~5 AU in diameter. The millimeter dust disk is compact, with a 68% enclosing flux radius of 14 AU, and the intensity profile exhibits a sharp drop between 10 and 20 AU, and a shallow tail between 20 and 40 AU. No clear signatures of substructure in the dust continuum are observed, down to the same sensitivity level of the DSHARP large program. However, the angular resolution does not allow us to detect substructures on the scale of the disk aspect ratio in the inner regions. The radial intensity profile closely resembles the inner regions of more extended disks imaged at the same resolution in DSHARP, but with no rings present in the outer disk. No inner cavity is detected, even though the disk has been classified as a transition disk from the spectral energy distribution in the near-infrared. The emission of~(12)CO is much more extended, with a 68% enclosing flux radius of 75 AU. The large difference of the millimeter dust and gas extents (> 5) strongly points to radial drift, and closely matches the predictions of theoretical models.
机译:绝大多数原行星盘在毫米波波长下具有非常紧凑的连续发射(?15 AU)。然而,由于与大型明亮盘相比,它们本质上较弱的发射,因此仍缺乏解决这些小型盘的高角度分辨率观察结果。在这封信中,我们介绍了绕TTauri星CX Tau绕行的微弱盘(〜10 mJy)的1.3 mm ALMA数据,分辨率为〜40 mas,直径为〜5 AU。毫米灰尘盘非常紧凑,包围通量半径的68%为14 AU,强度分布在10到20 AU之间急剧下降,在20到40 AU之间呈浅尾状。在粉尘连续体中没有观察到清晰的亚结构特征,直到DSHARP大型程序的灵敏度水平都相同。但是,角度分辨率不允许我们在内部区域中按磁盘纵横比的比例检测子结构。径向强度分布与在DSHARP中以相同分辨率成像的更多扩展盘的内部区域非常相似,但外部盘中没有环。即使根据近红外光谱的能量分布将该磁盘分类为过渡磁盘,也不会检测到内腔。 〜(12)CO的发射范围更大,包围通量半径为75 AU的68%。毫米波尘埃和瓦斯范围的巨大差异(> 5)强烈表明径向漂移,并且与理论模型的预测非常吻合。

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