In this paper, we assess how daily ozone (O3) measurements from the Infrared Atmospheric Sounding Interferometer (IASI) on the MetOp-A platform can contribute to the analyses of the processes driving O3 variability in the troposphere and the stratosphere and, in the future, to the monitoring of long-term trends. The temporal evolution of O3 during the first 6 years of IASI (2008-2013) operation is investigated with multivariate regressions separately in four different layers (ground-300, 300-150, 150-25, 25-3ĝ€hPa), by adjusting to the daily time series averaged in 20° zonal bands, seasonal and linear trend terms along with important geophysical drivers of O3 variation (e.g. solar flux, quasi-biennial oscillation (QBO)). The regression mode...
International audienceWe analyze the ozone (O3) variability in the troposphere (from ground to 300 h...
International audienceWe analyze the ozone (O3) variability in the troposphere (from ground to 300 h...
International audienceIn this study, we describe the recent changes in the tropospheric ozone (O3) c...
International audienceIn this paper, we assess how daily ozone (O3) measurements from the Infrared A...
International audienceIn this paper, we assess how daily ozone (O3) measurements from the Infrared A...
In this paper, we assess how daily ozone (O[subscript 3]) measurements from the Infrared Atmospheric...
In this paper, we assess how daily ozone (O<sub>3</sub>) measurements from the Infrared Atmospheric...
International audienceIn this paper, we assess how daily ozone (O3) measurements from the Infrared A...
International audienceIn this study, we assess how daily ozone (O3) measurements from the first ten ...
International audienceIn this study, we assess how daily ozone (O3) measurements from the first ten ...
International audienceIn this study, we assess how daily ozone (O3) measurements from the first ten ...
International audienceIn this study, we describe the recent changes in the tropospheric ozone (O3) c...
We analyze the ozone (O3) variability in the troposphere (from ground to 300 hPa) using 8 years (Jan...
In this study, we describe the recent changes in the tropospheric ozone (O3) columns measured by the...
International audienceWe analyze the ozone (O3) variability in the troposphere (from ground to 300 h...
International audienceWe analyze the ozone (O3) variability in the troposphere (from ground to 300 h...
International audienceWe analyze the ozone (O3) variability in the troposphere (from ground to 300 h...
International audienceIn this study, we describe the recent changes in the tropospheric ozone (O3) c...
International audienceIn this paper, we assess how daily ozone (O3) measurements from the Infrared A...
International audienceIn this paper, we assess how daily ozone (O3) measurements from the Infrared A...
In this paper, we assess how daily ozone (O[subscript 3]) measurements from the Infrared Atmospheric...
In this paper, we assess how daily ozone (O<sub>3</sub>) measurements from the Infrared Atmospheric...
International audienceIn this paper, we assess how daily ozone (O3) measurements from the Infrared A...
International audienceIn this study, we assess how daily ozone (O3) measurements from the first ten ...
International audienceIn this study, we assess how daily ozone (O3) measurements from the first ten ...
International audienceIn this study, we assess how daily ozone (O3) measurements from the first ten ...
International audienceIn this study, we describe the recent changes in the tropospheric ozone (O3) c...
We analyze the ozone (O3) variability in the troposphere (from ground to 300 hPa) using 8 years (Jan...
In this study, we describe the recent changes in the tropospheric ozone (O3) columns measured by the...
International audienceWe analyze the ozone (O3) variability in the troposphere (from ground to 300 h...
International audienceWe analyze the ozone (O3) variability in the troposphere (from ground to 300 h...
International audienceWe analyze the ozone (O3) variability in the troposphere (from ground to 300 h...
International audienceIn this study, we describe the recent changes in the tropospheric ozone (O3) c...