金牛座分子云中从恒星前到原恒星核心的碳链化学演化

Jenny M. Ramos, Yao-lun Yang
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引用次数: 0

摘要

原恒星核中丰富碳链分子的发现促进了热碳链化学的发展。为了了解热碳链化学在恒星形成区的作用,我们利用亚毫米望远镜(SMT)的数据,研究了金牛座分子云中15颗嵌入的原恒星的C2H和c-C3H2,这些原恒星的进化阶段从恒星前到I/II级不等。我们计算了每种源的激发温度、色谱柱密度以及C2H和c-C3H2的丰度。我们将这些特性与原恒星的演化指标进行了比较。我们还用RADEX估计了动力学温度。最后,我们将我们调查的C2H和c-C3H2的丰度与英仙座分子云原恒星核心的丰度进行了比较。虽然我们无法识别新的WCCC,但我们的研究结果表明,C2H和c-C3H2的丰度可能是寻找WCCC候选者的一个指标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The evolution of carbon-chain chemistry from prestellar to protostellar cores in Taurus Molecular Cloud
Abstract The discovery of abundant carbon-chain molecules in protostellar cores motivates the development of the warm carbon-chain chemistry. To understand the role of warm carbon-chain chemistry in star-forming regions, we studied C2H and c-C3H2 in 15 embedded protostars in the Taurus molecular cloud, whose evolutionary stages range from prestellar to Class I/II, using data from the Submillimeter Telescope (SMT). We calculated the excitation temperature, column density, and abundance of C2H and c-C3H2 in each source. We compared those properties with evolutionary indicators of the protostars. We also estimated the kinetic temperature using RADEX. Finally, we compared the abundance of C2H and c-C3H2 in our survey with that in the survey of protostellar cores in the Perseus molecular cloud. While we are unable to identify new WCCCs, our results suggest that the abundances of C2H and c-C3H2 could be an indicator to find WCCC candidates.
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