The atmospheric response to the 11-year solar cycle is separated into the contributions from changes in direct radiative heating and photolysis rates using specially designed sensitivity simulations with the UM-UKCA (Unified Model coupled to the United Kingdom Chemistry and Aerosol model) chemistry–climate model. We perform a number of idealised time-slice experiments under perpetual solar maximum (SMAX) and minimum conditions (SMIN), and we find that contributions from changes in direct heating and photolysis rates are both important for determining the stratospheric shortwave heating, temperature and ozone responses to the amplitude of the 11-year solar cycle. The combined effects of the processes are found to be largely additive in the t...
The 11-year solar cycles in ozone and temperature are examined using new simulations of coupled chem...
The atmospheric response to the 11 year solar cycle (SC) and its combination with the quasi-biennal ...
The results from three 45-year simulations of a coupled chemistry climate model are analysed for sol...
The atmospheric response to the 11-year solar cycle forcing is separated into the contributions from...
The atmospheric response to the 11-year solar cycle forcing is separated into the contributions from...
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...
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 11-year solar cycles in ozone and temperature are examined using new simulations of coupled chem...
The atmospheric response to the 11 year solar cycle (SC) and its combination with the quasi-biennal ...
The atmospheric response to the 11 year solar cycle (SC) and its combination with the quasi-biennal ...
The atmospheric response to the 11 year solar cycle (SC) and its combination with the quasi-biennal ...
The atmospheric response to the 11 year solar cycle (SC) and its combination with the quasi-biennal ...
The 11-year solar cycles in ozone and temperature are examined using new simulations of coupled chem...
The atmospheric response to the 11 year solar cycle (SC) and its combination with the quasi-biennal ...
The results from three 45-year simulations of a coupled chemistry climate model are analysed for sol...
The atmospheric response to the 11-year solar cycle forcing is separated into the contributions from...
The atmospheric response to the 11-year solar cycle forcing is separated into the contributions from...
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...
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 11-year solar cycles in ozone and temperature are examined using new simulations of coupled chem...
The atmospheric response to the 11 year solar cycle (SC) and its combination with the quasi-biennal ...
The atmospheric response to the 11 year solar cycle (SC) and its combination with the quasi-biennal ...
The atmospheric response to the 11 year solar cycle (SC) and its combination with the quasi-biennal ...
The atmospheric response to the 11 year solar cycle (SC) and its combination with the quasi-biennal ...
The 11-year solar cycles in ozone and temperature are examined using new simulations of coupled chem...
The atmospheric response to the 11 year solar cycle (SC) and its combination with the quasi-biennal ...
The results from three 45-year simulations of a coupled chemistry climate model are analysed for sol...