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地外眼球可居性。

HABEBEE: habitability of eyeball-exo-Earths.

机构信息

Hamburger Sternwarte, Universität Hamburg, Hamburg, Germany.

出版信息

Astrobiology. 2013 Mar;13(3):309-14. doi: 10.1089/ast.2012.0846. Epub 2013 Mar 19.

Abstract

Extrasolar Earth and super-Earth planets orbiting within the habitable zone of M dwarf host stars may play a significant role in the discovery of habitable environments beyond Earth. Spectroscopic characterization of these exoplanets with respect to habitability requires the determination of habitability parameters with respect to remote sensing. The habitable zone of dwarf stars is located in close proximity to the host star, such that exoplanets orbiting within this zone will likely be tidally locked. On terrestrial planets with an icy shell, this may produce a liquid water ocean at the substellar point, one particular "Eyeball Earth" state. In this research proposal, HABEBEE: exploring the HABitability of Eyeball-Exo-Earths, we define the parameters necessary to achieve a stable icy Eyeball Earth capable of supporting life. Astronomical and geochemical research will define parameters needed to simulate potentially habitable environments on an icy Eyeball Earth planet. Biological requirements will be based on detailed studies of microbial communities within Earth analog environments. Using the interdisciplinary results of both the physical and biological teams, we will set up a simulation chamber to expose a cold- and UV-tolerant microbial community to the theoretically derived Eyeball Earth climate states, simulating the composition, atmosphere, physical parameters, and stellar irradiation. Combining the results of both studies will enable us to derive observable parameters as well as target decision guidance and feasibility analysis for upcoming astronomical platforms.

摘要

系外地球和围绕 M 矮星宿主恒星的宜居带内的超级地球行星可能在发现地球以外的宜居环境方面发挥重要作用。为了从光谱学上确定这些系外行星的宜居性,需要根据遥感来确定宜居性参数。矮星的宜居带位于宿主恒星附近,因此在这个区域内运行的系外行星可能会被潮汐锁定。在具有冰壳的类地行星上,这可能会在亚恒星点产生一个液态水海洋,即一个特殊的“眼球地球”状态。在本研究计划中,HABEBEE:探索眼球系外地球的宜居性,我们定义了实现稳定的、具有宜居性的冰眼球地球所需的参数,使其能够支持生命。天文和地球化学研究将定义在冰眼球地球行星上模拟潜在宜居环境所需的参数。生物要求将基于对地球类似环境中微生物群落的详细研究。利用物理和生物团队的跨学科研究成果,我们将建立一个模拟室,将耐冷和耐紫外线的微生物群落暴露在理论上推导出来的眼球地球气候状态下,模拟组成、大气、物理参数和恒星辐射。将这两项研究的结果结合起来,将使我们能够得出可观测的参数,并为即将到来的天文平台提供目标决策指导和可行性分析。

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