English

Nitrogen Dioxide Pollution as a Signature of Extraterrestrial Technology

Earth and Planetary Astrophysics 2021-03-03 v1 Instrumentation and Methods for Astrophysics Popular Physics

Abstract

Nitrogen dioxide (NO2_2) on Earth today has biogenic and anthropogenic sources. During the COVID-19 pandemic, observations of global NO2_2 emissions have shown significant decrease in urban areas. Drawing upon this example of NO2_2 as an industrial byproduct, we use a one-dimensional photochemical model and synthetic spectral generator to assess the detectability of NO2_2 as an atmospheric technosignature on exoplanets. We consider cases of an Earth-like planet around Sun-like, K-dwarf and M-dwarf stars. We find that NO2_2 concentrations increase on planets around cooler stars due to less short-wavelength photons that can photolyze NO2_2. In cloud-free results, present Earth-level NO2_2 on an Earth-like planet around a Sun-like star at 10pc can be detected with SNR ~5 within ~400 hours with a 15 meter LUVOIR-like telescope when observed in the 0.2 - 0.7micron range where NO2_2 has a strong absorption. However, clouds and aerosols can reduce the detectability and could mimic the NO2_2 feature. Historically, global NO2_2 levels were 3x higher, indicating the capability of detecting a 40-year old Earth-level civilization. Transit and direct imaging observations to detect infrared spectral signatures of NO2_2 on habitable planets around M-dwarfs would need several 100s of hours of observation time, both due to weaker NO2_2 absorption in this region, and also because of masking features by dominant H2_2O and CO2_2 bands in the infrared part of the spectrum. Non-detection at these levels could be used to place upper limits on the prevalence of NO2_2 as a technosignature.

Keywords

Cite

@article{arxiv.2102.05027,
  title  = {Nitrogen Dioxide Pollution as a Signature of Extraterrestrial Technology},
  author = {Ravi Kopparapu and Giada Arney and Jacob Haqq-Misra and Jacob Lustig-Yaeger and Geronimo Villanueva},
  journal= {arXiv preprint arXiv:2102.05027},
  year   = {2021}
}

Comments

Accepted to Astrophysical Journal (in press). 1-D photochemical code from 'Atmos' is available at: https://github.com/VirtualPlanetaryLaboratory/atmos