论文标题
金牛座(ALMA-DOT)的磁盘流源的Alma化学调查:I。CO,CS,CN和H2CO周围DG Tau B周围
ALMA chemical survey of disk-outflow sources in Taurus (ALMA-DOT): I. CO, CS, CN, and H2CO around DG Tau B
论文作者
论文摘要
行星的化学组成是通过在原始磁盘中在其形成的TheTime中的各种分子物种的分布遗传而来的。截至今天,只有少数磁盘在具有高空间分辨率的多个光谱线上成像。作为一项小型运动的一部分,该运动致力于金牛座的磁盘输出源的化学表征,我们报告了新的Alma频段6观测值,其中20个AU的分辨率分辨为嵌入式幼颗恒星DG Tau B.连续体排放的图像揭示了带有戒指的灰尘磁盘,并推定了带领的螺旋臂。在CO,H2CO,CS和CN中检测到磁盘以及突出的流出腔,而在SO2,HDO和CH3OH中仍未发现它们。从后侧流出的吸收中,我们推断出磁盘发射在内部50 AU中是光学厚的。该形态解释了为什么从该内部区域未检测到线排放,并在计算尘埃质量和内气盘的表征方面构成了一些局限性。内部200 AU的H2CO和CS发射主要来自磁盘,它们的形态非常相似。 CN发射与其他两个分子明显不同,因为仅观察到150 au以上。这种环状形态与以前的观察结果和热化学磁盘模型的预测一致。最后,我们限制了所有分子的磁盘集成柱密度。特别是,我们发现CH3OH/H2CO比必须小于2,这使得非检测的甲醇仍然与文献中唯一可用的比率一致(TW hya中的1.27)。
The chemical composition of planets is inherited by the distribution of the various molecular species in the protoplanetary disk at thetime of their formation. As of today, only a handful of disks has been imaged in multiple spectral lines with high spatial resolution. As part of a small campaign devoted to the chemical characterization of disk-outflow sources in Taurus, we report on new ALMA Band 6 observations with 20 au resolution toward the embedded young star DG Tau B. Images of the continuum emission reveals a dust disk with rings and, putatively, a leading spiral arm. The disk, as well as the prominent outflow cavities, are detected in CO, H2CO, CS, and CN while they remain undetected in SO2, HDO, and CH3OH. From the absorption of the back-side outflow, we inferred that the disk emission is optically thick in the inner 50 au. This morphology explains why no line emission is detected from this inner region and poses some limitations toward the calculation of the dust mass and the characterization of the inner gaseous disk. The H2CO and CS emission from the inner 200 au is mostly from the disk and their morphology is very similar. The CN emission significantly differs from the other two molecules as it is observed only beyond 150 au. This ring-like morphology is consistent with previous observations and the predictions of thermochemical disk models. Finally, we constrained the disk-integrated column density of all molecules. In particular, we found that the CH3OH/H2CO ratio must be smaller than 2, making the methanol non-detection still consistent with the only such a ratio available from the literature (1.27 in TW Hya).