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Atmospheric Beacons of Life from Exoplanets Around G and K Stars

机译:G和K恒星周围系外行星的生命大气信标

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摘要

The current explosion in detection and characterization of thousands of extrasolar planets from the Kepler mission, the Hubble Space Telescope, and large ground-based telescopes opens a new era in searches for Earth-analog exoplanets with conditions suitable for sustaining life. As more Earth-sized exoplanets are detected in the near future, we will soon have an opportunity to identify habitale worlds. Which atmospheric biosignature gases from habitable planets can be detected with our current capabilities? The detection of the common biosignatures from nitrogen-oxygen rich terrestrial-type exoplanets including molecular oxygen (O2), ozone (O3), water vapor (H2O), carbon dioxide (CO2), nitrous oxide (N2O), and methane (CH4) requires days of integration time with largest space telescopes, and thus are very challenging for current instruments. In this paper we propose to use the powerful emission from rotational-vibrational bands of nitric oxide, hydroxyl and molecular oxygen as signatures of nitrogen, oxygen, and water rich atmospheres of terrestrial type exoplanets “highlighted” by the magnetic activity from young G and K main-sequence stars. The signals from these fundamental chemical prerequisites of life we call atmospheric “beacons of life” create a unique opportunity to perform direct imaging observations of Earth-sized exoplanets with high signal-to-noise and low spectral resolution with the upcoming NASA missions.
机译:开普勒任务,哈勃太空望远镜和大型地面望远镜对数千种太阳系外行星的探测和表征当前的爆炸式增长,为寻找适合维持生命的条件的模拟地球系外行星开启了一个新时代。随着在不久的将来发现更多地球大小的系外行星,我们将很快有机会识别惯性世界。用我们目前的能力可以检测到来自宜居行星的哪些大气生物特征气体?从富含氮氧的地球系系外行星中检测常见的生物特征,包括分子氧(O2),臭氧(O3),水蒸气(H2O),二氧化碳(CO2),一氧化二氮(N2O)和甲烷(CH4)与大型太空望远镜需要几天的整合时间,因此对于当前的仪器而言非常具有挑战性。在本文中,我们建议使用一氧化氮,羟基和分子氧的旋转振动带产生的强大发射作为被年轻G和K的磁活动``突显''的陆地型系外行星的氮,氧和富水大气的标志。主序星。这些来自生命的基本化学先决条件的信号(我们称为大气“生命的信标”)为利用即将到来的NASA任务以高信噪比和低光谱分辨率对地球大小的系外行星进行直接成像观测提供了独特的机会。

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