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首页> 外文期刊>Astronomy and astrophysics >High-resolution observations of the outer disk around T Chamaeleontis: the view from ALMA
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High-resolution observations of the outer disk around T Chamaeleontis: the view from ALMA

机译:T Chamaeleontis周围外盘的高分辨率观测:ALMA的观点

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Context. Transitional disks are circumstellar disks with dust gaps thought to be related in some cases to planet formation. They can shed light on the planet formation process by the analysis of their gas and dust properties. T Cha is a young star surrounded by a transitional disk with signatures of planet formation. Aims. The aim of this work is to spatially resolve the outer disk around T Cha and to derive its main properties. Methods. We have obtained high-resolution and high-sensitivity ALMA observations in the CO(3–2), 13CO(3–2), and CS(7–6) emission lines to reveal the spatial distribution of the gaseous disk around the star. In order to study the dust within the disk we have also obtained continuum images at 850 μm from the line-free channels. Results. We have spatially resolved the outer disk around T Cha. Using the CO(3?2) emission we derive a radius of ~230?AU. We also report the detection of the 13CO(3?2) and the CS(7?8) molecular emissions, which show smaller radii than the CO(3?2) detection. The continuum observations at 850?μm allow the spatial resolution of the dusty disk, which shows two emission bumps separated by ~40?AU, consistent with the presence of a dust gap in the inner regions of the disk, and an outer radius of ~80?AU. Therefore, T Cha is surrounded by a compact dusty disk and a larger and more diffuse gaseous disk, as previously observed in other young stars. The continuum intensity profiles are different at both sides of the disk suggesting possible dust asymmetries. We derive an inclination of i(°) = 67 ± 5, and a position angle of PA(°) = 113 ± 6, for both the gas and dust disks. The comparison of the ALMA data with radiative transfer models shows that the gas and dust components can only be simultaneously reproduced when we include a tapered edge prescription for the surface density profile. The best model suggests that most of the disk mass is placed within a radius of R< 50?AU. Finally, we derive a dynamical mass for the central object of M? = 1.5 ± 0.2?M⊙, comparable to the one estimated with evolutionary models for an age of ~10 Myr.
机译:上下文。过渡圆盘是具有尘埃间隙的星际圆盘,在某些情况下尘埃间隙与行星的形成有关。他们可以通过分析其气体和尘埃特性来阐明行星的形成过程。 T Cha是一颗年轻的恒星,周围环绕着带有行星形成特征的过渡盘。目的这项工作的目的是在空间上解析围绕T Cha的外盘并推导其主要特性。方法。我们已经在CO(3–2),13CO(3–2)和CS(7–6)发射线中获得了高分辨率和高灵敏度的ALMA观测,以揭示恒星周围气态盘的空间分布。为了研究磁盘中的灰尘,我们还从无线通道获得了850μm的连续图像。结果。我们已经在空间上解析了T Cha周围的外盘。使用CO(3?2)发射,我们得出的半径约为230?AU。我们还报告了13CO(3?2)和CS(7?8)分子发射的检测,它们显示的半径比CO(3?2)检测的半径小。在850?μm处进行的连续观测得到了尘埃盘的空间分辨率,该图显示了两个由〜40?AU隔开的发射凸点,这与该盘的内部区域中存在尘埃间隙,且其外半径为〜 80?AU。因此,正如先前在其他年轻恒星中所观察到的那样,T Cha被一个紧凑的尘埃盘和一个更大且扩散程度更大的气态盘所包围。圆盘两侧的连续强度分布不同,表明可能存在粉尘不对称性。对于气体和灰尘盘,我们得出i(°)= 67±5的倾斜度和PA(°)= 113±6的位置角。 ALMA数据与辐射传输模型的比较表明,只有当我们为表面密度分布包括渐缩边缘规定时,才能同时复制气体和粉尘成分。最好的模型表明,大多数磁盘块都位于R <50?AU的半径内。最后,我们得出M?的中心物体的动力学质量。 = 1.5±0.2?M⊙,与约10 Myr年龄的进化模型估计的结果相当。

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