论文标题

狼疮中对原球门磁盘气体块的新约束

New Constraints on Protoplanetary Disk Gas Masses in Lupus

论文作者

Anderson, Dana E., Cleeves, L. Ilsedore, Blake, Geoffrey A., Bergin, Edwin A., Zhang, Ke, Carpenter, John M., Schwarz, Kamber R.

论文摘要

气体质量是原动性磁盘的基本数量,与它们形成行星的能力直接相关。由于我们无法直接观察磁盘的散装h $ _2 $内容,因此我们依靠间接示踪剂来提供定量的质量估计。狼疮恒星形成区域观察到的磁盘种群气体质量的当前估计是基于对CO的同位素学的测量值。但是,如果没有其他约束,则H $ _2 $质量与气体的元素组成之间的退化导致了此类估计中的大型不确定性。在这里,我们探索了来自狼疮样品的七个圆盘的气体组成,这些气体代表了一系列CO与盘状比率。通过频段6和7 ALMA观察,我们测量了HCO $^+$,HCN和N $ _2 $ H $^+$的线排放。我们发现样品中这三个分子物种的线通量之间存在暂定相关性,但与$^{13} $ CO或少量MM连续通量无关。对于检测到n $ _2 $ h $^+$的三个磁盘,我们发现需要高磁盘气体量和子截图C/H和O/H的组合来复制观察到的值。我们发现需要增加$ \ sim $ 10-100 $ \ times $以前的质量估计来匹配观察到的线路通量。这项研究强调了多分子研究对于限制原磁盘种群中气体的物理和化学性质至关重要,仅凭CO同位素学对于确定许多观察到的磁盘的质量不足以确定。

Gas mass is a fundamental quantity of protoplanetary disks that directly relates to their ability to form planets. Because we are unable to observe the bulk H$_2$ content of disks directly, we rely on indirect tracers to provide quantitative mass estimates. Current estimates for the gas masses of the observed disk population in the Lupus star-forming region are based on measurements of isotopologues of CO. However, without additional constraints, the degeneracy between H$_2$ mass and the elemental composition of the gas leads to large uncertainties in such estimates. Here we explore the gas compositions of seven disks from the Lupus sample representing a range of CO-to-dust ratios. With Band 6 and 7 ALMA observations, we measure line emission for HCO$^+$, HCN, and N$_2$H$^+$. We find a tentative correlation among the line fluxes for these three molecular species across the sample, but no correlation with $^{13}$CO or sub-mm continuum fluxes. For the three disks where N$_2$H$^+$ is detected, we find that a combination of high disk gas masses and sub-interstellar C/H and O/H are needed to reproduce the observed values. We find increases of $\sim$10-100$\times$ previous mass estimates are required to match the observed line fluxes. This study highlights how multi-molecular studies are essential for constraining the physical and chemical properties of the gas in populations of protoplanetary disks and that CO isotopologues alone are not sufficient for determining the mass of many observed disks.

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