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关于在 M 矮星周围可居住行星上陆地植物的生长和可探测性。

On the Growth and Detectability of Land Plants on Habitable Planets around M Dwarfs.

机构信息

1 Ministry of Education Key Laboratory for Earth System Modeling, Center for Earth System Science, Tsinghua University , Beijing, China .

2 Department of Atmospheric and Oceanic Sciences, McGill University , Montreal, Canada .

出版信息

Astrobiology. 2017 Dec;17(12):1219-1232. doi: 10.1089/ast.2016.1617. Epub 2017 Nov 17.

Abstract

One signature of life on Earth is the vegetation red edge (VRE) feature of land plants, a dramatic change of reflectivity at wavelength near 0.7 μm. Potentially habitable planets around M dwarfs are tidally locked, which can limit the distribution of land plants. In this study, we used a biogeochemical model to investigate the distribution of land plants on potentially habitable planets around M dwarfs driven by climate data produced in a general circulation model (GCM). When considering the effects of clouds, the observation time needed for VRE detection on nearby p = 1 exoplanets around nearby M dwarfs is on the order of days using a 25 m telescope if a large continent faces Earth during observations. For p = 1.5 exoplanets, the detection time could be similar if land plants developed the capability to endure a dark/cold environment for extended periods of time and the continent configuration favors observations. Our analysis suggests that hypothetical exovegetation VRE features are easier to detect than Earth vegetation and that VRE detection is possible for nearby exoplanets even under cloudy conditions. Key Words: Vegetation red edge-Exoplanets-M dwarfs-Biosignature detection. Astrobiology 17, 1219-1232.

摘要

地球上生命的一个特征是陆地植物的植被红边 (VRE) 特征,即在近 0.7μm 波长处反射率的急剧变化。围绕 M 矮星的潜在可居住行星被潮汐锁定,这可能限制了陆地植物的分布。在这项研究中,我们使用生物地球化学模型,根据一般环流模型 (GCM) 生成的气候数据,研究了受气候驱动的 M 矮星周围潜在可居住行星上陆地植物的分布。当考虑到云的影响时,如果在观测期间大的大陆面朝向地球,那么使用 25m 望远镜在附近的 p=1 系外行星上进行 VRE 探测所需的观测时间约为几天。对于 p=1.5 的系外行星,如果陆地植物具备在黑暗/寒冷环境中长时间生存的能力,并且大陆的配置有利于观测,那么探测时间可能相似。我们的分析表明,假设的系外植物 VRE 特征比地球植被更容易探测到,并且即使在云层条件下,也可以对附近的系外行星进行 VRE 探测。关键词:植被红边-系外行星-M 矮星-生物特征检测。天体生物学 17, 1219-1232。

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