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Space-Based Infrared Interferometry to Study Exoplanetary Atmospheres
[摘要] The quest for other habitable worlds and the search for life among them are major goals of modern astronomy. One way to make progress towards these goals is to obtain high-quality spectra of a large number of exoplanets over a broad range of wavelengths. While concepts currently investigated in the United States are focused on visible/NIR wavelengths, where the planets are probed in reflected light, a compelling alternative to characterize planetary atmospheres is the mid-infrared waveband (5-20 um). Indeed, mid-infrared observations provide key information on the presence of an atmosphere, the surface conditions (e.g., temperature, pressure, habitability), and the atmospheric composition in important species such as H2O,CO2, O3, CH4, and N2O. This information is essential to investigate the potential habitability of exoplanets and to make progress towards the search for life in the Universe. Obtaining high-quality mid-infrared spectra of exoplanets from the ground is however extremely challenging due to the overwhelming brightness and turbulence of the Earth's atmosphere. In this paper, we present a concept of space-based midinfrared interferometer that can tackle this observing challenge and discuss the maintechnological developments required to launch such a sophisticated instrument.
[发布日期] 2018-11-29 [发布机构] 
[效力级别]  [学科分类] 天体物理学
[关键词] ATMOSPHERIC COMPOSITION;EARTH ATMOSPHERE;EXTRASOLAR PLANETS;HABITABILITY;INFRARED INTERFEROMETERS;INFRARED RADIATION;INTERFEROMETERS;LAUNCHING;METHANE;NITROGEN OXIDES;OZONE;PLANETARY ATMOSPHERES;PLANETS;SURFACE PROPERTIES;TURBULENCE;UNITED STATES;UNIVERSE [时效性] 
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