论文标题

在类似地球的行星上找到生命的迹象:地球的高分辨率传输光谱穿过FGKM星星

Finding Signs of Life on Earth-like Planets: High-resolution Transmission Spectra of Earth through time around FGKM stars

论文作者

Kaltenegger, L., Lin, Z., Rugheimer, S.

论文摘要

在宇宙中寻找生命的主要是将现代地球用作模板。但是,我们知道地球的大气组成通过其地质进化发生了很大变化。最近的发现表明,传播的,潜在的地球样系外行星轨道横向着广泛的宿主恒星,这强烈影响其大气成分并远程检测到可检测的光谱。因此,在不同地质时代,用于在不同的宿主恒星周围经过陆地系外行星的数据库是支持观察性搜索系外行星大气中生命迹象的关键成分。在这里,我们介绍了地球历史的四个代表性阶段,介绍了类似地球的行星的第一个高分辨率传输光谱数据库。这些对应于益生元高的二氧化碳世界 - 大约39亿年前的地球历史 - 三个时期,氧气从0.2%升至21%的现代大气水平。我们证明,光谱生物签名对O2 + CH4和O3 + CH4在类似地球的行星大气中,将表明一个遥远的观察者,生物圈存在于大约1%现代地球的氧气浓度,相当于地球历史上约1至20亿年前的氧气。整个模型和高分辨率的传输光谱数据库覆盖了0.4至20米,用于过渡系外行星 - 从幼儿元素元素到现代地球 - 纳尔语 - 绕在线提供了广泛的宿主星星。它可以用作计划和优化我们的观察策略,训练检索方法以及用基于地面和空间的望远镜来解释即将到来的观测值的工具。

The search for life in the universe mainly uses modern Earth as a template. However, we know that Earth's atmospheric composition changed significantly through its geological evolution. Recent discoveries show that transiting, potentially Earth-like exoplanets orbit a wide range of host stars, which strongly influence their atmospheric composition and remotely detectable spectra. Thus, a database for transiting terrestrial exoplanet around different host stars at different geological times is a crucial missing ingredient to support observational searches for signs of life in exoplanet atmospheres. Here, we present the first high-resolution transmission spectra database for Earth-like planets, orbiting a wide range of host stars, throughout four representative stages of Earth's history. These correspond to a prebiotic high CO2-world - about 3.9 billion years ago in Earth's history - and three epochs through the rise of oxygen from 0.2% to modern atmospheric levels of 21%. We demonstrate that the spectral biosignature pairs O2 + CH4 and O3 + CH4 in the atmosphere of a transiting Earth-like planet would show a remote observer that a biosphere exists for oxygen concentrations of about 1% modern Earth's - corresponding to about 1 to 2 billion years ago in Earth's history - for all host stars. The full model and high-resolution transmission spectra database, covering 0.4 to 20microns, for transiting exoplanets - from young prebiotic worlds to modern Earths-analogs - orbiting a wide range of host stars is available online. It can be used as a tool to plan and optimize our observation strategy, train retrieval methods, and interpret upcoming observations with ground- and space-based telescopes.

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