Impacts of UV Radiation from an AGN on Planetary Atmospheres and Consequences for Galactic Habitability

Fuente: arXiv
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Auteurs principaux: Sippy, Kendall I., Eager-Nash, Jake K., Hickox, Ryan C., Mayne, Nathan J., Brumback, McKinley C.
Format: Preprint
Publié: 2024
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author Sippy, Kendall I.
Eager-Nash, Jake K.
Hickox, Ryan C.
Mayne, Nathan J.
Brumback, McKinley C.
author_facet Sippy, Kendall I.
Eager-Nash, Jake K.
Hickox, Ryan C.
Mayne, Nathan J.
Brumback, McKinley C.
contents We present a study of the effects of ultraviolet (UV) emission from active galactic nuclei (AGN) on the atmospheric composition of planets and potential impact on life. It is expected that all supermassive black holes, which reside at galactic centers, have gone through periods of high AGN activity in order to reach their current masses. We examine potential damaging effects on lifeforms on planets with different atmosphere types and receiving different levels of AGN flux, using data on the sensitivity of various species' cells to UV radiation to determine when radiation becomes "dangerous". We also consider potential chemical changes to planetary atmospheres as a result of UV radiation from AGN, using the PALEO photochemical model. We find the presence of sufficient initial oxygen (surface mixing ratio $\geq 10^{-3} \rm\, mol/mol$) in the planet's atmosphere allows a thicker ozone layer to form in response to AGN radiation, which reduces the level of dangerous UV radiation incident on the planetary surface from what it was in absence of an AGN. We estimate the fraction of solar systems in galaxies that would be affected by AGN UV radiation, and find that the impact is most pronounced in compact galaxies such as "red nugget relics", as compared to typical present-day ellipticals and spirals (using M87 and the Milky Way as examples).
format Preprint
id arxiv_https___arxiv_org_abs_2411_15341
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Impacts of UV Radiation from an AGN on Planetary Atmospheres and Consequences for Galactic Habitability
Sippy, Kendall I.
Eager-Nash, Jake K.
Hickox, Ryan C.
Mayne, Nathan J.
Brumback, McKinley C.
Earth and Planetary Astrophysics
Astrophysics of Galaxies
High Energy Astrophysical Phenomena
We present a study of the effects of ultraviolet (UV) emission from active galactic nuclei (AGN) on the atmospheric composition of planets and potential impact on life. It is expected that all supermassive black holes, which reside at galactic centers, have gone through periods of high AGN activity in order to reach their current masses. We examine potential damaging effects on lifeforms on planets with different atmosphere types and receiving different levels of AGN flux, using data on the sensitivity of various species' cells to UV radiation to determine when radiation becomes "dangerous". We also consider potential chemical changes to planetary atmospheres as a result of UV radiation from AGN, using the PALEO photochemical model. We find the presence of sufficient initial oxygen (surface mixing ratio $\geq 10^{-3} \rm\, mol/mol$) in the planet's atmosphere allows a thicker ozone layer to form in response to AGN radiation, which reduces the level of dangerous UV radiation incident on the planetary surface from what it was in absence of an AGN. We estimate the fraction of solar systems in galaxies that would be affected by AGN UV radiation, and find that the impact is most pronounced in compact galaxies such as "red nugget relics", as compared to typical present-day ellipticals and spirals (using M87 and the Milky Way as examples).
title Impacts of UV Radiation from an AGN on Planetary Atmospheres and Consequences for Galactic Habitability
topic Earth and Planetary Astrophysics
Astrophysics of Galaxies
High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2411.15341