论文标题

GV Tau N中关键益生元分子的气体运动学揭示了Alma,PDBI和Herschel Synergy

Gas kinematics of key prebiotic molecules in GV Tau N revealed with an ALMA, PdBI, and Herschel synergy

论文作者

Fuente, A., Treviño-Morales, S. P., Gal, R. Le, Riviere-Marichalar, P., Pilleri, P., Rodriguez-Baras, M., Navarro-Almaida, D.

论文摘要

已经付出了巨大的努力,以使用空间和基于地面的近红外设施来检测星际光盘的星球形成区域。 GV Tau N是GV TAU系统中最模糊的组成部分,是一个出色的来源,是HCN中检测到的第一个目标之一,也是迄今为止唯一检测到的目标之一。尽管近乎红外线的观察结果揭示了其化学含量,但情节物质的物理结构和运动学仍然未知。我们使用HCN 3-2和$^{13} $ 3-2行的干涉图像,以及$^{13} $ CO,HCN,CN和H $ _2 $ O的Far-Ir观察值,以辨别出浓密气体的形态,运动学和化学性的过渡。这些观察结果构成了h $ _2 $ o的首次检测。此外,阿尔玛(Alma)高空间分辨率(〜7 au)在1.1 mm处的连续体图像,HCN 3-2线将不同的气体组件解析为GV tau n,带有r〜25 au,一个离子化的射击和二世(或二)(或二)(或二)的GASE DIS(均可)。气盘的不对称形态表明它已被喷气机侵蚀。如果GV tau n是二进制的,则可以解释所有观察结果,并且主要成分相对于圆盘具有高度倾斜的个体盘。我们根据这种情况讨论水的起源和其他分子的发射。特别是,我们建议水发射将来自破坏的气态和分子流出。

A large effort has been made to detect warm gas in the planet formation zone of circumstellar discs using space and ground-based near infrared facilities. GV Tau N, the most obscured component of the GV Tau system, is an outstanding source, being one of the first targets detected in HCN and the only one detected in CH$_4$ so far. Although near infrared observations have shed light on its chemical content, the physical structure and kinematics of the circumstellar matter remained unknown. We use interferometric images of the HCN 3-2 and $^{13}$CO 3-2 lines, and far-IR observations of $^{13}$CO, HCN, CN and H$_2$O transitions to discern the morphology, kinematics, and chemistry of the dense gas close to the star. These observations constitute the first detection of H$_2$O towards GV Tau N. Moreover, ALMA high spatial resolution (~ 7 au) images of the continuum at 1.1 mm and the HCN 3-2 line resolve different gas components towards GV Tau N, a gaseous disc with R~25 au, an ionized jet, and one (or two) molecular outflows. The asymmetric morphology of the gaseous disc shows that it has been eroded by the jet. All observations can be explained if GV Tau N is binary, and the primary component has a highly inclined individual disc relative to the circumbinary disc. We discuss the origin of the water and the other molecules emission according to this scenario. In particular, we propose that the water emission would come from the disrupted gaseous disc and the molecular outflows.

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