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ALMA Observations of Asymmetric Molecular Gas Emission from a Protoplanetary Disk in the Orion Nebula

机译:ALMA观测到猎户星云原行星盘不对称分子气体的排放

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We present Atacama Large Millimeter/submillimeter Array (ALMA) observations of molecular line emission from d216-0939, one of the largest and most massive protoplanetary disks in the Orion Nebula Cluster. We model the spectrally resolved HCO+ (4–3), CO (3–2), and HCN (4–3) lines observed at 05 resolution to fit the temperature and density structure of the disk. We also weakly detect and spectrally resolve the CS (7–6) line but do not model it. The abundances we derive for CO and HCO+ are generally consistent with expected values from chemical modeling of protoplanetary disks, while the HCN abundance is higher than expected. We dynamically measure the mass of the central star to be , which is inconsistent with the previously determined spectral type of K5. We also report the detection of a spatially unresolved high-velocity blueshifted excess emission feature with a measurable positional offset from the central star, consistent with a Keplerian orbit at 60?±?20 au. Using the integrated flux of the feature in HCO+ (4–3), we estimate the total H2 gas mass of this feature to be at least , depending on the assumed temperature. The feature is due to a local temperature and/or density enhancement consistent with either a hydrodynamic vortex or the expected signature of the envelope of a forming protoplanet within the disk.
机译:我们介绍了阿塔卡马大毫米波/亚毫米级阵列(ALMA)从d216-0939(猎户座星云团中最大,质量最大的原行星盘之一)发射的分子线的观测结果。我们对在05分辨率下观察到的光谱分辨的HCO +(4–3),CO(3–2)和HCN(4–3)线进行建模,以适合磁盘的温度和密度结构。我们还对CS(7-6)线进行弱检测和频谱解析,但不对其建模。我们得出的CO和HCO +的丰度通常与原行星盘化学模型的预期值一致,而HCN的丰度高于预期。我们动态测量中心星的质量为,这与先前确定的K5光谱类型不一致。我们还报告了对空间未解析的高速蓝移过量发射特征的检测,该特征具有可测量的偏离中心恒星的位置偏移,与60?±20 au处的开普勒轨道一致。使用HCO +(4–3)中特征的积分通量,我们估计此特征的总H2气体质量至少为,取决于假定的温度。该特征归因于局部温度和/或密度的提高,其与流体动力涡旋或盘内成形原行星的包络的预期特征一致。

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