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Some inconvenient truths about biosignatures involving two chemical species on Earth-like exoplanets

机译:关于涉及类地球系外行星上两个化学物种的生物特征的一些不便事实

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摘要

The detection of strong thermochemical disequilibrium in the atmosphere of an extrasolar planet is thought to be a potential biosignature. In this article we present a previously unidentified kind of false positive that can mimic a disequilibrium or any other biosignature that involves two chemical species. We consider a scenario where the exoplanet hosts a moon that has its own atmosphere and neither of the atmospheres is in chemical disequilibrium. Our results show that the integrated spectrum of the planet and the moon closely resembles that of a single object in strong chemical disequilibrium. We derive a firm limit on the maximum spectral resolution that can be obtained for both directly imaged and transiting planets. The spectral resolution of even idealized space-based spectrographs that might be achievable in the next several decades is in general insufficient to break the degeneracy. Both chemical species can only be definitively confirmed in the same object if absorption features of both chemicals can be unambiguously identified and their combined depth exceeds 100%.
机译:在太阳系外行星大气中检测到强烈的热化学不平衡现象被认为是潜在的生物特征。在本文中,我们介绍了一种以前无法识别的假阳性,可以模拟不平衡或涉及两个化学物种的任何其他生物特征。我们考虑一种情况,系外行星拥有一个拥有自己的大气层的月球,并且两个大气层都不处于化学不平衡状态。我们的结果表明,在强烈的化学不平衡中,行星和月球的综合光谱非常类似于单个物体的综合光谱。我们得出了直接成像和过渡行星均可获得的最大光谱分辨率的严格限制。在未来几十年内甚至可以实现的理想化天基光谱仪的光谱分辨率通常也不足以打破简并性。如果可以清楚地确定两种化学物质的吸收特征,并且它们的组合深度超过100%,则只能在同一对象中确定两种化学物质。

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