论文标题

行星氮循环的破坏作为外星农业的证据

Disruption of a Planetary Nitrogen Cycle as Evidence of Extraterrestrial Agriculture

论文作者

Haqq-Misra, Jacob, Fauchez, Thomas J., Schwieterman, Edward W., Kopparapu, Ravi

论文摘要

农业是地球上最古老的技术形式之一。植物的栽培需要一个具有活性水文和碳周期的陆地行星,并取决于土壤中氮的可用性。农业的技术创新是通过将肥料施加到土壤中,首先是通过生产肥料过量的,但后来由Haber-Bosch工业过程来实现了这种氮循环的积极管理。这种肥料的使用增加了含氮物种的大气丰度,例如NH $ _3 $和n $ _2 $ o作为农业生产力在世界许多地方都增强了农业生产力。 NH $ _3 $和N $ _2 $ O都是有效的温室气体,并且在宜居行星的大气中,这些气体的综合存在可以用作技术的遥控光谱签名。在这里,我们使用合成光谱发电机来评估NH $ _3 $和N $ _2 $ O的可检测性,这将来自当今和未来的全球规模农业。我们表明,很难检测到当今的NH $ _3 $和n $ _2 $ O的地球丰度,但是与农业前地球相比,涉及一个拥有300亿人的行星的假设场景可能显示出约50-70%的透射率。这些计算表明有可能在气氛中同时检测NH $ _3 $和N $ _2 $ O,该气氛中还包含H $ _2 $ O,O $ _2 $,以及CO $ _2 $作为外星农业的技术签名。农业技术是可以在地质时间范围内具有可持续性的一种,因此在寻找技术签名时,值得考虑这种“ Exofarm”的光谱签名。

Agriculture is one of the oldest forms of technology on Earth. The cultivation of plants requires a terrestrial planet with active hydrological and carbon cycles and depends on the availability of nitrogen in soil. The technological innovation of agriculture is the active management of this nitrogen cycle by applying fertilizer to soil, at first through the production of manure excesses but later by the Haber-Bosch industrial process. The use of such fertilizers has increased the atmospheric abundance of nitrogen-containing species such as NH$_3$ and N$_2$O as agricultural productivity intensifies in many parts of the world. Both NH$_3$ and N$_2$O are effective greenhouse gases, and the combined presence of these gases in the atmosphere of a habitable planet could serve as a remotely detectable spectral signature of technology. Here we use a synthetic spectral generator to assess the detectability of NH$_3$ and N$_2$O that would arise from present-day and future global-scale agriculture. We show that present-day Earth abundances of NH$_3$ and N$_2$O would be difficult to detect but hypothetical scenarios involving a planet with 30-100 billion people could show a change in transmittance of about 50-70% compared to pre-agricultural Earth. These calculations suggest the possibility of considering the simultaneous detection of NH$_3$ and N$_2$O in an atmosphere that also contains H$_2$O, O$_2$, and CO$_2$ as a technosignature for extraterrestrial agriculture. The technology of agriculture is one that could be sustainable across geologic timescales, so the spectral signature of such an "ExoFarm" is worth considering in the search for technosignatures.

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