论文标题

盐,热水和硅化合物追踪大型双盘

Salt, Hot Water, and Silicon Compounds Tracing Massive Twin Disks

论文作者

Tanaka, Kei E. I., Zhang, Yichen, Hirota, Tomoya, Sakai, Nami, Motogi, Kazuhito, Tomida, Kengo, Tan, Jonathan C., Rosero, Viviana, Higuchi, Aya E., Ohashi, Satoshi, Liu, Mengyao, Sugiyama, Koichiro

论文摘要

我们报告了针对O型原始二元系统IRAS 16547-4247的0.05“分辨率观察结果,该系统具有Atacama大毫米/亚毫升阵列(ALMA)。我们呈现了圆盘的动力学和化学结构,循环磁盘,室外磁盘,外观磁盘,流量,流量和jets,图形,由多孔和各种分子进行了分类,我们的分子和各种分子,以及各种分数,我们的各种分数,我们的各种分数,各种分数。硅化合物和振动兴奋的水线作为100个尺度的单个原始磁盘的探针。 NaCl,SIO和SI的过渡不一定是高州的高能量,它们仅在Protostars的附近得到增强。高能过渡水和硅化合物表明,这些“热盘”线可能在大型质恒定的磁盘中很常见,并且有很大的潜力,可以使我们的恒星形成大量磁盘。

We report results of 0.05"-resolution observations toward the O-type proto-binary system IRAS 16547-4247 with the Atacama Large Millimeter/submillimeter Array (ALMA). We present dynamical and chemical structures of the circumbinary disk, circumstellar disks, outflows and jets, illustrated by multi-wavelength continuum and various molecular lines. In particular, we detect sodium chloride, silicon compounds, and vibrationally-excited water lines as probes of the individual protostellar disks at a scale of 100 au. These are complementary to typical hot-core molecules tracing the circumbinary structures on a 1000-au scale. The H2O line tracing inner-disks has an upper-state energy of Eu/k>3000K, indicating a high temperature of the disks. On the other hand, despite the detected transitions of NaCl, SiO, and SiS not necessarily having high upper-state energies, they are enhanced only in the vicinity of the protostars. We interpret that these molecules are the products of dust destruction, which only happens in the inner disks. This is the second detection of alkali metal halide in protostellar systems after the case of the disk of Orion Source I, and also one of few massive protostellar disks associated with high-energy transition water and silicon compounds. These new results suggest these "hot-disk" lines may be common in innermost disks around massive protostars, and have great potential for future research of massive star formation. We also tentatively find that the twin disks are counter-rotating, which might give a hint of the origin of the massive proto-binary system IRAS 16547-4247.

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