论文标题

苔丝的第一个可居住地球大小的行星。 III:TOI-700 D的气候状态和表征前景

The First Habitable Zone Earth-sized Planet from TESS. III: Climate States and Characterization Prospects for TOI-700 d

论文作者

Suissa, Gabrielle, Wolf, Eric T., Kopparapu, Ravi kumar, Villanueva, Geronimo L., Fauchez, Thomas, Mandell, Avi M., Arney, Giada, Gilbert, Emily A., Schlieder, Joshua E., Barclay, Thomas, Quintana, Elisa V., Lopez, Eric, Rodriguez, Joseph E., Vanderburg, Andrew

论文摘要

我们为新发现的可居住区的地球大小的行星(TOI-700 d)提供了对可能可居住的状态的自洽的三维气候模拟。我们探索了各种大气组成,压力和旋转状态,以供海洋覆盖和完全干燥的行星,以评估行星的居住性潜力。在所有20个模拟情况下,我们使用气候模型输出来合成传输光谱,合并光谱和集成的宽带相曲线。这些具有气候知识的可观察物将有助于社区评估该星球将来表征所需的技术能力 - 以及将来在未来发现的类似的过境行星 - 并将为可能的气候状态提供指南,如果我们有一天我们确实获得了M -Star周围可居住星球的敏感光谱观察结果。我们发现,TOI-700 D是可居住世界的强大候选者,并且可以在各种大气组成下保持温带的表面条件。不幸的是,来自所得传输光谱的光谱深度以及峰值通量以及我们合成相曲线的变化TOI-700 D不超过10 ppm。这可能会禁止James Webb太空望远镜(JWST)表征其气氛。但是,这促使社区投资于未来的仪器,这也许有一天可以揭示TOI-700 D的真实本质,并继续在距离较小的恒星周围寻找类似的行星。

We present self-consistent three-dimensional climate simulations of possible habitable states for the newly discovered Habitable Zone Earth-sized planet, TOI-700 d. We explore a variety of atmospheric compositions, pressures, and rotation states for both ocean-covered and completely desiccated planets in order to assess the planet's potential for habitability. For all 20 of our simulated cases, we use our climate model outputs to synthesize transmission spectra, combined-light spectra, and integrated broadband phase curves. These climatologically-informed observables will help the community assess the technological capabilities necessary for future characterization of this planet - as well as similar transiting planets discovered in the future - and will provide a guide for distinguishing possible climate states if one day we do obtain sensitive spectral observations of a habitable planet around a M-star. We find that TOI-700 d is a strong candidate for a habitable world and can potentially maintain temperate surface conditions under a wide variety of atmospheric compositions. Unfortunately, the spectral feature depths from the resulting transmission spectra and the peak flux and variations from our synthesized phase curves for TOI-700 d do not exceed 10 ppm. This will likely prohibit the James Webb Space Telescope (JWST) from characterizing its atmosphere; however, this motivates the community to invest in future instrumentation that perhaps can one day reveal the true nature of TOI-700 d, and to continue to search for similar planets around less distant stars.

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