arXiv · astro-ph/0411284
Terrestrial Ozone Depletion Due to a Milky Way Gamma-Ray Burst
Abstract
Based on cosmological rates, it is probable that at least once in the last Gy the Earth has been irradiated by a gamma-ray burst in our Galaxy from within 2 kpc. Using a two-dimensional atmospheric model we have performed the first computation of the effects upon the Earth's atmosphere of one such impulsive event. A ten second burst delivering 100 kJ/m^2 to the Earth penetrates to the stratosphere and results in globally averaged ozone depletion of 35%, with depletion reaching 55% at some latitudes. Significant global depletion persists for over 5 years after the burst. This depletion would have dramatic implications for life since a 50% decrease in ozone column density results in approximately three times the normal UVB flux. Widespread extinctions are likely, based on extrapolation from UVB sensitivity of modern organisms. Additional effects include a shot of nitrate fertilizer and NO2 opacity in the visible providing a cooling perturbation to the climate over a similar timescale. These results lend support to the hypothesis that a GRB may have initiated the late Ordovician mass extinction (Melott et al. 2004).
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Brian C. Thomas, Charles H. Jackman, Adrian L. Melott, Claude M. Laird, Richard S. Stolarski, Neil Gehrels, John K. Cannizzo, Daniel P. Hogan. 2005-02-10. Terrestrial Ozone Depletion Due to a Milky Way Gamma-Ray Burst. https://doi.org/10.1086/429799
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