论文标题

无处不在的芳族碳化学在恒星形成的最早阶段

Ubiquitous Aromatic Carbon Chemistry at the Earliest Stages of Star Formation

论文作者

Burkhardt, Andrew M., Loomis, Ryan A., Shingledecker, Christopher N., Lee, Kin Long Kelvin, Remijan, Anthony J., McCarthy, Michael C., McGuire, Brett A.

论文摘要

Benzonitrile ($c$-C$_6$H$_5$CN), a polar proxy for benzene ($c$-C$_6$H$_6$}), has the potential to serve as a highly convenient radio probe for aromatic chemistry, provided this ring can be found in other astronomical sources beyond the molecule-rich prestellar cloud TMC-1 where it was first reported by McGuire et al.在2018年。在这里,我们在另外四个前的遗迹和可能的Protostellar中提供了苯硝基甲射线天文学证据:Serpens 1A,Serpens 1B,Serpens 1B,Serpens 2和MC27/L1521F。这些检测确定苯硝基酯不是TMC-1独有的。相反的芳香化学似乎在恒星形成的最早阶段很普遍,可能至少持续到质体的初始形成。苯乙烯的丰度远远超过了模型的预测,这些模型很好地再现了碳链的丰富度,例如HC $ _7 $ N,一种具有相同重原子的氰基蛋白酶,表明在原始来源中负责平面碳结构(与线性相对)的化学反应是有利的,但尚未理解。相对于碳 - 链分子的苯硝基体的丰度显示了金牛座和蛇纹云的源之间的显着变化,这意味着物理条件的重要性和云本身的初始元素储层的重要性。

Benzonitrile ($c$-C$_6$H$_5$CN), a polar proxy for benzene ($c$-C$_6$H$_6$}), has the potential to serve as a highly convenient radio probe for aromatic chemistry, provided this ring can be found in other astronomical sources beyond the molecule-rich prestellar cloud TMC-1 where it was first reported by McGuire et al. in 2018. Here we present radio astronomical evidence of benzonitrile in four additional pre-stellar, and possibly protostellar, sources: Serpens 1A, Serpens 1B, Serpens 2, and MC27/L1521F. These detections establish benzonitrile is not unique to TMC-1; rather aromatic chemistry appears to be widespread throughout the earliest stages of star formation, likely persisting at least to the initial formation of a protostar. The abundance of benzonitrile far exceeds predictions from models which well reproduce the abundances of carbon chains, such as HC$_7$N, a cyanpolyyne with the same heavy atoms, indicating the chemistry responsible for planar carbon structures (as opposed to linear ones) in primordial sources is favorable but not well understood. The abundance of benzonitrile relative to carbon-chain molecules displays sizable variations between sources within the Taurus and Serpens clouds, implying the importance of physical conditions and initial elemental reservoirs of the clouds themselves.

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