Nitrate ions spikes in ice cores are not suitable proxies for solar proton events
arXiv:1511.03358 · doi:10.1002/2015JD023805
Abstract
Nitrate ion spikes in polar ice cores are contentiously used to estimate the intensity, frequency, and probability of historical solar proton events, quantities that are needed to prepare for potentially society-crippling space weather events. We use the Whole Atmosphere Community Climate Model to calculate how large an event would have to be to produce enough odd nitrogen throughout the atmosphere to be discernible as nitrate peaks at the Earth's surface. These hypothetically large events are compared with probability of occurrence estimates derived from measured events, sunspot records, and cosmogenic radionuclides archives. We conclude that the fluence and spectrum of solar proton events necessary to produce odd nitrogen enhancements equivalent to the spikes of nitrate ions in Greenland ice cores are unlikely to have occurred throughout the Holocene, confirming that nitrate ions in ice cores are not suitable proxies for historical individual solar proton events.
60 pages, 17 figures, to be published in the Journal of Geophysical Research: Atmospheres
References in corpus (3)
- Occurrence Probability of Large Solar Energetic Particle Events: Assessment from Data on Cosmogenic Radionuclides in Lunar Rocks
- Low time resolution analysis of polar ice cores cannot detect impulsive nitrate events
- Atmospheric ionization by high-fluence, hard spectrum solar proton events and their probable appearance in the ice core archive
Cited by in corpus (5)
- Extreme solar events
- Risks for life on habitable planets from superflares of their host stars
- New reconstruction of event-integrated spectra (spectral fluences) for major solar energetic particle events
- Atmospheric ionization by high-fluence, hard spectrum solar proton events and their probable appearance in the ice core archive
- Comment on "Atmospheric ionization by high-fluence, hard spectrum solar proton events and their probable appearance in the ice core archive" by A.L. Melott et al