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Influence of a Carrington-like event on the atmospheric chemistry, temperature and dynamics

Revised

Datos Bibliográficos

ID15545985
AutoresM Calisto (International Space Science Institute, autor de correspondencia), I Usoskin (0000-0001-8227-9081, University of Oulu), Eugene Rozanov (0000-0003-0479-4488, Physikalisch-Meteorologisches Observatorium Davos)
Año2013
Volumen8
Número4
Páginas045010-045010
Fecha de publicación2013-10-16
Peer ReviewedSí
Open AccessSí
TipoARTICLE
RevistaEnvironmental Research Letters (JOURNAL)
Identificadores de la revistaISSN: 1748-9326 • E-ISSN: 1748-9326
EditorialIOP Publishing (PUBLISHER • GB)
DOI10.1088/1748-9326/8/4/045010
OpenAlexW2143663420
IdiomaEN
Citas recibidas1
Referencias citadas39

This study investigates the influence of a major solar proton event (SPE) similar to the Carrington event of 1–2 September 1859 by means of the 3D chemistry climate model (CCM) SOCOL v2.0. Ionization rates were parameterized according to CRAC:CRII (Cosmic Ray-induced Atmospheric Cascade: Application for Cosmic Ray Induced Ionization), a detailed state-of-the-art model describing the effects of SPEs in the entire altitude range of the CCM from 0 to 80 km. This is the first study of the atmospheric effect of such an extreme event that considers all the effects of energetic particles, including the variability of galactic cosmic rays, in the entire atmosphere. We assumed two scenarios for the event, namely with a hard (as for the SPE of February 1956) and soft (as for the SPE of August 1972) spectrum of solar particles. We have placed such an event in the year 2020 in order to analyze the impact on a near future atmosphere. We find statistically significant effects on NOx, HOx, ozone, temperature and zonal wind. The results show an increase of NOx of up to 80 ppb in the northern polar region and an increase of up to 70 ppb in the southern polar region. HOx shows an increase of up to 4000%. Due to the NOx and HOx enhancements, ozone reduces by up to 60% in the mesosphere and by up to 20% in the stratosphere for several weeks after the event started. Total ozone shows a decrease of more than 20 DU in the northern hemisphere and up to 20 DU in the southern hemisphere. The model also identifies SPE induced statistically significant changes in the surface air temperature, with warming in the eastern part of Europe and Russia of up to 7 K for January

Astrophysics · Atmosphere (unit · Atmospheric chemistry · Atmospheric sciences · Cosmic ray · Mesosphere · Meteorology · NOx · Ozone · Physics · Stratosphere · Atmospheric chemistry and aerosols · Atmospheric Ozone and Climate · Chemistry · Environmental Science · Ionosphere and magnetosphere dynamics

  • Focus on high energy particles and atmospheric processes

    Open Access•Roman G Harrison, Keri Nicoll et al.•Environmental Research Letters•2015

  • The Arctic oscillation signature in the wintertime geopotential height and temperature fields

    Open Access•David W J Thompson, John M Wallace•Geophysical Research Letters•1998

  • The solar events of August/September 1859 – Surviving Australian observations

    Open Access•J E Humble•Advances in Space Research•2006

Obras citantes distintas1
Citas por año0,09
Intervalo de citas2015 - 2015 (1)
Velocidad de citaciónhistorical
Altamente citadoNo
Tipos de citaNeutras: 1
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