The 11-year solar cycles in ozone and temperature are examined using new simulations of coupled chemistry climate models. The results show a secondary maximum in stratospheric tropical ozone, in agreement with satellite observations and in contrast with most previously published simulations. The mean model response varies by up to about 2.5% in ozone and 0.8 K in temperature during a typical solar cycle, at the lower end of the observed ranges of peak responses. Neither the upper atmospheric effects of energetic particles nor the presence of the quasi biennial oscillation is necessary to simulate the lower stratospheric response in the observed low latitude ozone concentration. Comparisons are also made between model simulations and observe...
The results from three 45-year simulations of a coupled chemistry climate model are analysed for sol...
We have used a fully coupled chemistry-climate model (WACCM) to investigate the relative importance ...
The impact of changes in incoming solar irradiance on stratospheric ozone abundances should be inclu...
The 11-year solar cycles in ozone and temperature are examined using new simulations of coupled chem...
The 11-year solar cycles in ozone and temperature are examined using newsimulations of coupled chemi...
The 11-year solar cycles in ozone and temperature are examined using newsimulations of coupled chemi...
The 11-year solar cycles in ozone and temperature are examined using newsimulations of coupled chemi...
The 11-year solar cycles in ozone and temperature are examined using new simulations of coupled chem...
The 11-year solar cycles in ozone and temperature are examined using new simulations of coupled chem...
The 11-year solar cycles in ozone and temperature are examined using newsimulations of coupled chemi...
The 11-year solar cycles in ozone and temperature are examined using new simulations of coupled chem...
The 11-year solar cycles in ozone and temperature are examined using new simulations of coupled chem...
International audienceThe results from three 45-year simulations of a coupled chemistry climate mode...
International audienceThe results from three 45-year simulations of a coupled chemistry climate mode...
The results from three 45-year simulations of a coupled chemistry climate model are analysed for sol...
The results from three 45-year simulations of a coupled chemistry climate model are analysed for sol...
We have used a fully coupled chemistry-climate model (WACCM) to investigate the relative importance ...
The impact of changes in incoming solar irradiance on stratospheric ozone abundances should be inclu...
The 11-year solar cycles in ozone and temperature are examined using new simulations of coupled chem...
The 11-year solar cycles in ozone and temperature are examined using newsimulations of coupled chemi...
The 11-year solar cycles in ozone and temperature are examined using newsimulations of coupled chemi...
The 11-year solar cycles in ozone and temperature are examined using newsimulations of coupled chemi...
The 11-year solar cycles in ozone and temperature are examined using new simulations of coupled chem...
The 11-year solar cycles in ozone and temperature are examined using new simulations of coupled chem...
The 11-year solar cycles in ozone and temperature are examined using newsimulations of coupled chemi...
The 11-year solar cycles in ozone and temperature are examined using new simulations of coupled chem...
The 11-year solar cycles in ozone and temperature are examined using new simulations of coupled chem...
International audienceThe results from three 45-year simulations of a coupled chemistry climate mode...
International audienceThe results from three 45-year simulations of a coupled chemistry climate mode...
The results from three 45-year simulations of a coupled chemistry climate model are analysed for sol...
The results from three 45-year simulations of a coupled chemistry climate model are analysed for sol...
We have used a fully coupled chemistry-climate model (WACCM) to investigate the relative importance ...
The impact of changes in incoming solar irradiance on stratospheric ozone abundances should be inclu...