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恒星HD141569周围原行星盘中的一氧化碳和氢离子。

CO and H(3)(+) in the protoplanetary disk around the star HD141569.

作者信息

Brittain Sean D, Rettig Terrence W

机构信息

University of Notre Dame, Center for Astrophysics, Notre Dame, Indiana 46556, USA.

出版信息

Nature. 2002 Jul 4;418(6893):57-9. doi: 10.1038/nature00800.

Abstract

Massive planets have now been found orbiting about 80 stars. A long outstanding question critical to theories of planet formation has been the timescale on which gas-giant planets form; in particular, stars more massive than the Sun may blow away the surrounding gas associated with their formation more quickly than it can be accumulated by the protoplanetary cores. Evidence for a protoplanet around a Herbig AeBe star (such stars are 2 3 times more massive than the Sun) would constrain the timescale of planet formation. Here we report the detection of CO and H(3)(+) emission from the 5-10-million-year-old Herbig AeBe star HD141569. We interpret the CO data as indicating that the inner disk surrounding the star is past the early phase of accretion and planetesimal formation, and that most of the gas has been cleared out to a distance of more than 17 astronomical units. CO effectively destroys H(3)(+) (ref. 2), so their presence in the same source is surprising. Moreover, H(3)(+) line emission has previously been detected only from the atmospheres of the giant planets in the Solar System. The H(3)(+) and CO may therefore be distributed in the disk at different circumstellar distances, or, alternatively, H(3)(+) may be located in the extended envelope of a protoplanet.

摘要

现已发现有大质量行星围绕约80颗恒星运行。对于行星形成理论至关重要的一个长期悬而未决的问题是气态巨行星形成的时间尺度;特别是,质量比太阳大的恒星可能会比原行星核积累周围气体的速度更快地吹散与其形成相关的周围气体。在一颗御夫座AeBe星(这类恒星的质量比太阳大2至3倍)周围存在原行星的证据将限制行星形成的时间尺度。在此,我们报告在有500至1000万年历史的御夫座AeBe星HD141569中检测到一氧化碳(CO)和H₃⁺发射。我们对一氧化碳数据的解读表明,围绕该恒星的内盘已过吸积和微行星形成的早期阶段,并且大部分气体已被清除至超过17天文单位的距离。一氧化碳会有效破坏H₃⁺(参考文献2),因此它们在同一源中的存在令人惊讶。此外,此前仅在太阳系巨行星的大气层中检测到H₃⁺发射线。因此,H₃⁺和一氧化碳可能在盘内以不同的星周距离分布,或者,H₃⁺可能位于原行星的延伸包层中。

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