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Using Biogenic Sulfur Gases as Remotely Detectable Biosignatures on Anoxic Planets

机译:使用生物硫气体作为缺氧行星上的远程可检测生物特征

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摘要

We used one-dimensional photochemical and radiative transfer models to study the potential of organic sulfur compounds (CS2, OCS, CH3SH, CH3SCH3, and CH3S2CH3) to act as remotely detectable biosignatures in anoxic exoplanetary atmospheres. Concentrations of organic sulfur gases were predicted for various biogenic sulfur fluxes into anoxic atmospheres and were found to increase with decreasing UV fluxes. Dimethyl sulfide (CH3SCH3, or DMS) and dimethyl disulfide (CH3S2CH3, or DMDS) concentrations could increase to remotely detectable levels, but only in cases of extremely low UV fluxes, which may occur in the habitable zone of an inactive M dwarf. The most detectable feature of organic sulfur gases is an indirect one that results from an increase in ethane (C2H6) over that which would be predicted based on the planet's methane (CH4) concentration. Thus, a characterization mission could detect these organic sulfur gases—and therefore the life that produces them—if it could sufficiently quantify the ethane and methane in the exoplanet's atmosphere. Key Words: Exoplanets—Biosignatures—Anoxic atmospheres—Planetary atmospheres—Remote life detection—Photochemistry. Astrobiology 11, 419–441.
机译:我们使用了一维光化学和辐射转移模型来研究有机硫化合物(CS2,OCS,CH3SH,CH3SCH3和CH3S2CH3)在缺氧行星外大气中作为可远程检测到的生物特征的潜力。预测了进入缺氧气氛的各种生物硫通量中有机硫气体的浓度,并发现其随紫外线通量的降低而增加。二甲基硫醚(CH3SCH3或DMS)和二甲基二硫醚(CH3S2CH3或DMDS)的浓度可以增加到可远程检测到的水平,但是仅在极低的UV通量的情况下,这可能发生在非活动M矮星的可居住区域。有机硫气体最易检测到的特征是一种间接特征,其原因是乙烷(C2H6)的增加超过了根据地球甲烷(CH4)浓度预测的增加。因此,如果表征任务可以充分量化系外行星大气中的乙烷和甲烷,则可以检测到这些有机硫气体,并进而检测产生它们的寿命。关键词:系外行星-生物特征-缺氧大气-行星大气-远程生命检测-光化学。天体生物学11,419–441。

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