论文标题

来自实验室实验的温带超级地球和迷你新闻大气危险的化学

Chemistry of Temperate Super-Earth and Mini-Neptune Atmospheric Hazes from Laboratory Experiments

论文作者

Moran, Sarah E., Hörst, Sarah M., Vuitton, Véronique, He, Chao, Lewis, Nikole K., Flandinet, Laurène, Moses, Julianne I., North, Nicole, Orthous-Daunay, François-Régis, Sebree, Joshua, Wolters, Cédric, Kempton, Eliza M. -R., Marley, Mark S., Morley, Caroline V., Valenti, Jeff A.

论文摘要

几乎没有完成的实验工作来探索与外太阳系或早期地球的大气或温度非常不同的大气中形成的光化学危险的性能。随着外星星球的发现数千,这个未开发的相空间值得探索。这项研究介绍了在系外行星大气的实验室类似物中产生的雾化颗粒的化学特性。我们使用非常高分辨率的质谱法来测量在大气室实验中产生的固体颗粒的化学成分。检测到许多带有通用化学公式的复杂分子物种C $ _W $ h $ _x $ n $ _y $ o $ $ _z $。我们检测到数据中具有益生元兴趣的分子公式,包括单糖甘油醛,各种氨基酸和核苷酸碱以及几种糖衍生物的分子公式。此外,实验性系模式类似物具有多种溶解度特征,可深入了解超收入和迷你新闻大气中光化学危险的进一步化学或物理改变的可能性。这些系外类似颗粒可以帮助我们更好地理解化学大气过程,并提出遥远世界上现场大气前益生元化学的可能来源。

Very little experimental work has been done to explore the properties of photochemical hazes formed in atmospheres with very different compositions or temperatures than that of the outer solar system or of early Earth. With extrasolar planet discoveries now numbering thousands, this untapped phase space merits exploration. This study presents measured chemical properties of haze particles produced in laboratory analogues of exoplanet atmospheres. We used very high resolution mass spectrometry to measure the chemical components of solid particles produced in atmospheric chamber experiments. Many complex molecular species with general chemical formulas C$_w$H$_x$N$_y$O$_z$ were detected. We detect molecular formulas of prebiotic interest in the data, including those for the monosaccharide glyceraldehyde, a variety of amino acids and nucleotide bases, and several sugar derivatives. Additionally, the experimental exoplanetary haze analogues exhibit diverse solubility characteristics, which provide insight into the possibility of further chemical or physical alteration of photochemical hazes in super-Earth and mini-Neptune atmospheres. These exoplanet analogue particles can help us better understand chemical atmospheric processes and suggest a possible source of in situ atmospheric prebiotic chemistry on distant worlds.

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