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系外行星 HD 189733b 的地基近红外发射光谱。

A ground-based near-infrared emission spectrum of the exoplanet HD 189733b.

机构信息

Jet Propulsion Laboratory, California Institute of Technology, 4800 Oak Grove Drive, Pasadena, California 91109-8099, USA.

出版信息

Nature. 2010 Feb 4;463(7281):637-9. doi: 10.1038/nature08775.

Abstract

Detection of molecules using infrared spectroscopy probes the conditions and compositions of exoplanet atmospheres. Water (H(2)O), methane (CH(4)), carbon dioxide (CO(2)), and carbon monoxide (CO) have been detected in two hot Jupiters. These previous results relied on space-based telescopes that do not provide spectroscopic capability in the 2.4-5.2 microm spectral region. Here we report ground-based observations of the dayside emission spectrum for HD 189733b between 2.0-2.4 microm and 3.1-4.1 microm, where we find a bright emission feature. Where overlap with space-based instruments exists, our results are in excellent agreement with previous measurements. A feature at approximately 3.25 microm is unexpected and difficult to explain with models that assume local thermodynamic equilibrium (LTE) conditions at the 1 bar to 1 x 10(-6) bar pressures typically sampled by infrared measurements. The most likely explanation for this feature is that it arises from non-LTE emission from CH(4), similar to what is seen in the atmospheres of planets in our own Solar System. These results suggest that non-LTE effects may need to be considered when interpreting measurements of strongly irradiated exoplanets.

摘要

利用红外光谱探测分子可以研究系外行星大气的条件和组成。已经在两颗热木星中检测到了水(H(2)O)、甲烷(CH(4))、二氧化碳(CO(2))和一氧化碳(CO)。这些先前的结果依赖于天基望远镜,这些望远镜在 2.4-5.2 微米的光谱区域内不提供光谱能力。在这里,我们报告了在 2.0-2.4 微米和 3.1-4.1 微米之间对 HD 189733b 的日间发射光谱的地基观测,在那里我们发现了一个明亮的发射特征。在与天基仪器重叠的地方,我们的结果与以前的测量结果非常吻合。大约在 3.25 微米处的特征是出乎意料的,并且很难用假设在红外测量通常采样的 1 巴到 1 x 10(-6) 巴压力下局部热力学平衡(LTE)条件的模型来解释。这个特征最有可能的解释是它来自于 CH(4)的非 LTE 发射,类似于我们太阳系中行星大气中的情况。这些结果表明,在解释强辐照系外行星的测量结果时,可能需要考虑非 LTE 效应。

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