This paper studies the response of the middle atmosphere to the 11-year solar cycle. The study is based on numerical simulations with the Hamburg Model of the Neutral and Ionized Atmosphere (HAMMONIA), a chemistry climate model that resolves the atmosphere from the Earth’s surface up to about 250 km. Results presented here are obtained in two multi-year time-slice runs for solar maximum and minimum conditions, respectively. The magnitude of the simulated annual and zonal mean stratospheric response in temperature and ozone corresponds well to observations. The dynamical model response is studied for northern hemisphere winter. Here, the zonal mean wind change differs substantially from observations. The statistical significance of the model...
International audienceThe impact of the 11-year solar cycle on the stratosphere and, in particular, ...
International audienceThe impact of the 11-year solar cycle on the stratosphere and, in particular, ...
This paper analyzes the effects of the solar rotational (27-day) irradiance variations on the chemic...
This paper studies the response of the middle atmosphere to the 11-year solar cycle. The study is ba...
This paper studies the response of the middle atmosphere to the 11-year solar cycle. The study is ba...
This paper introduces the three-dimensional Hamburg Model of the Neutral and Ionized Atmosphere (HAM...
This paper introduces the three-dimensional Hamburg Model of the Neutral and Ionized Atmosphere (HAM...
This paper introduces the three-dimensional Hamburg Model of the Neutral and Ionized Atmosphere (HAM...
This paper introduces the three-dimensional Hamburg Model of the Neutral and Ionized Atmosphere (HA...
This paper introduces the three-dimensional Hamburg Model of the Neutral and Ionized Atmosphere (HAM...
This paper introduces the three-dimensional Hamburg Model of the Neutral and Ionized Atmosphere (HAM...
(HAMMONIA) that treats atmospheric dynamics, radiation and chemistry interactively for the height ra...
The 11-year solar cycle forcing is recognised as a potentially important atmospheric forcing; howeve...
This paper analyzes the effects of the solar rotational (27-day) irradiance variations on the chemic...
International audienceThe impact of the 11-year solar cycle on the stratosphere and, in particular, ...
International audienceThe impact of the 11-year solar cycle on the stratosphere and, in particular, ...
International audienceThe impact of the 11-year solar cycle on the stratosphere and, in particular, ...
This paper analyzes the effects of the solar rotational (27-day) irradiance variations on the chemic...
This paper studies the response of the middle atmosphere to the 11-year solar cycle. The study is ba...
This paper studies the response of the middle atmosphere to the 11-year solar cycle. The study is ba...
This paper introduces the three-dimensional Hamburg Model of the Neutral and Ionized Atmosphere (HAM...
This paper introduces the three-dimensional Hamburg Model of the Neutral and Ionized Atmosphere (HAM...
This paper introduces the three-dimensional Hamburg Model of the Neutral and Ionized Atmosphere (HAM...
This paper introduces the three-dimensional Hamburg Model of the Neutral and Ionized Atmosphere (HA...
This paper introduces the three-dimensional Hamburg Model of the Neutral and Ionized Atmosphere (HAM...
This paper introduces the three-dimensional Hamburg Model of the Neutral and Ionized Atmosphere (HAM...
(HAMMONIA) that treats atmospheric dynamics, radiation and chemistry interactively for the height ra...
The 11-year solar cycle forcing is recognised as a potentially important atmospheric forcing; howeve...
This paper analyzes the effects of the solar rotational (27-day) irradiance variations on the chemic...
International audienceThe impact of the 11-year solar cycle on the stratosphere and, in particular, ...
International audienceThe impact of the 11-year solar cycle on the stratosphere and, in particular, ...
International audienceThe impact of the 11-year solar cycle on the stratosphere and, in particular, ...
This paper analyzes the effects of the solar rotational (27-day) irradiance variations on the chemic...