论文标题

相对生物签名的框架从未来的直接成像任务中产生

A Framework for Relative Biosignature Yields from Future Direct Imaging Missions

论文作者

Tuchow, Noah W., Wright, Jason T.

论文摘要

未来的系外行星直接成像任务,例如Habex和Luvoir,将选择目标恒星,以最大程度地提高具有其大气成分的地球样系外行星的数量。因为这些任务的目标之一是检测生物签名,所以他们还应考虑这些恒星周围行星的预期生物签名产量。 在这项工作中,我们开发了一种计算潜在目标恒星中相对生物签名产量的方法,给定一个可居住性和生物签名创世纪的模型,并使用恒星的可居住历史。作为该方法的例证和第一个应用,我们使用MESA恒星模型来计算可居住区的时间演变,并检查三个简单的生物签名创世纪模型,以计算不同恒星的相对生物签名产率。 我们发现,K恒星与F星的相对优点敏感地取决于模型选择。特别是,使用当今的宜居区作为生物签名可​​检测性的代理,有利于年轻的恒星,缺乏长期居住性的潜力。生物签名的产量也对生命是否可以在形成后进入宜居区的寒冷开始的系外行星上敏感,这是一个值得更多关注的开放问题。 使用针对$θ$ cygni和55 Cancri计算的生物签名产量的案例研究,我们发现HABEX和Luvoir的强大任务设计和目标选择取决于:选择随时间出现生物签名的特定模型;地球行星的发生率是轨道分离的函数;恒星特性的精确知识;和准确的恒星进化史。

Future exoplanet direct imaging missions, such as HabEx and LUVOIR, will select target stars to maximize the number of Earth-like exoplanets that can have their atmospheric compositions characterized. Because one of these missions' aims is to detect biosignatures, they should also consider the expected biosignature yield of planets around these stars. In this work, we develop a method of computing relative biosignature yields among potential target stars, given a model of habitability and biosignature genesis, and using a star's habitability history. As an illustration and first application of this method, we use MESA stellar models to calculate the time evolution of the habitable zone, and examine three simple models for biosignature genesis to calculate the relative biosignature yield for different stars. We find that the relative merits of K stars versus F stars depend sensitively on model choice. In particular, use of the present-day habitable zone as a proxy for biosignature detectability favors young, luminous stars lacking the potential for long-term habitability. Biosignature yields are also sensitive to whether life can arise on Cold Start exoplanets that enter the habitable zone after formation, an open question deserving of more attention. Using the case study of biosignature yields calculated for $θ$ Cygni and 55 Cancri, we find that robust mission design and target selection for HabEx and LUVOIR depends on: choosing a specific model of biosignature appearance with time; the terrestrial planet occurrence rate as a function of orbital separation; precise knowledge of stellar properties; and accurate stellar evolutionary histories.

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