The 11-yr solar cycle temperature response to spectrally resolved solar irradiance changes and associated ozone changes is calculated using a fixed dynamical heating (FDH) model. Imposed ozone changes are from satellite observations, in contrast to some earlier studies. A maximum of 1.6 K is found in the equatorial upper stratosphere and a secondary maximum of 0.4 K in the equatorial lower stratosphere, forming a double peak in the vertical. The upper maximum is primarily due to the irradiance changes while the lower maximum is due to the imposed ozone changes. The results compare well with analyses using the 40-yr ECMWF Re-Analysis (ERA-40) and NCEP/NCAR datasets. The equatorial lower stratospheric structure is reproduced even though, by d...
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...
Influence of the some of the the most important processes contributing ozone variability (stratosphe...
The 11-yr solar cycle temperature response to spectrally resolved solar irradiance changes and assoc...
International audienceThree analyses of satellite observations and two sets of model studies are use...
The role of stratospheric ozone changes in determining the climate response to solar forcing is inve...
Previous multiple regression analyses of the solar cycle variation of stratospheric ozone are improv...
The stratospheric temperature trend has only been measurable on a global scale since the late 1970's...
Influence of the some of the the most important processes contributing ozone variability (stratosphe...
A decadal variation of tropical lower stratospheric ozone and temperature has previously been identi...
Solar variability can influence surface climate, for example by affecting the mid-to-high-latitude s...
International audienceTo investigate the effects of decadal solar variability on ozone and temperatu...
Satellite and ozone-sonde observations indicated a decreasing trend in the ozone concentration in th...
The atmospheric response to the 11-year solar cycle forcing is separated into the contributions from...
The results from three 45-year simulations of a coupled chemistry climate model are analysed for sol...
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...
Influence of the some of the the most important processes contributing ozone variability (stratosphe...
The 11-yr solar cycle temperature response to spectrally resolved solar irradiance changes and assoc...
International audienceThree analyses of satellite observations and two sets of model studies are use...
The role of stratospheric ozone changes in determining the climate response to solar forcing is inve...
Previous multiple regression analyses of the solar cycle variation of stratospheric ozone are improv...
The stratospheric temperature trend has only been measurable on a global scale since the late 1970's...
Influence of the some of the the most important processes contributing ozone variability (stratosphe...
A decadal variation of tropical lower stratospheric ozone and temperature has previously been identi...
Solar variability can influence surface climate, for example by affecting the mid-to-high-latitude s...
International audienceTo investigate the effects of decadal solar variability on ozone and temperatu...
Satellite and ozone-sonde observations indicated a decreasing trend in the ozone concentration in th...
The atmospheric response to the 11-year solar cycle forcing is separated into the contributions from...
The results from three 45-year simulations of a coupled chemistry climate model are analysed for sol...
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...
Influence of the some of the the most important processes contributing ozone variability (stratosphe...