peer reviewedAbstract. This study presents an updated evaluation of stratospheric ozone profile trends in the 60∘ S–60º N latitude range over the 2000–2020 period using an updated version of the Long-term Ozone Trends and Uncertainties in the Stratosphere (LOTUS) regression model that was used to evaluate such trends up to 2016 for the last WMO Ozone Assessment (2018). In addition to the derivation of detailed trends as a function of latitude and vertical coordinates, the regressions are performed with the datasets averaged over broad latitude bands, i.e. 60–35º S, 20º S–20º N and 35–60º N. The same methodology as in the last assessment is applied to combine trends in these broad latitude bands in order to compare the results with the prev...
This Report summarises the main results obtained during the first year of the LOTUS activity, which...
We present an updated perspective on near-global total ozone trends for the period 1995–2020. We use...
International audienceNOAA’s ground-based (GB) remote sensing and in situ instruments continuously t...
This study presents an updated evaluation of stratospheric ozone profile trends in the 60° S–60° N l...
International audienceThis study presents an updated evaluation of stratospheric ozone profile trend...
Ozone profile trends over the period 2000 to 2016 from several merged satellite ozone data sets and ...
International audienceTrends in the vertical distribution of ozone are reported and compared for a n...
International audienceTrends in ozone columns and vertical distributions were calculated for the per...
Monthly means data sets from satellite, ground-based and model records used in the article entitled:...
Trends in the vertical distribution of ozone are reported and compared for a number of new and recen...
International audienceTrends in ozone columns and vertical distributions were calculated for the per...
Ozone profile trends over the period 2000 to 2016 from several merged satellite ozone data sets and ...
The trends and variability of ozone are assessed over a northern mid-latitude station, Haute-Provenc...
This Report summarises the main results obtained during the first year of the LOTUS activity, which...
We present an updated perspective on near-global total ozone trends for the period 1995–2020. We use...
International audienceNOAA’s ground-based (GB) remote sensing and in situ instruments continuously t...
This study presents an updated evaluation of stratospheric ozone profile trends in the 60° S–60° N l...
International audienceThis study presents an updated evaluation of stratospheric ozone profile trend...
Ozone profile trends over the period 2000 to 2016 from several merged satellite ozone data sets and ...
International audienceTrends in the vertical distribution of ozone are reported and compared for a n...
International audienceTrends in ozone columns and vertical distributions were calculated for the per...
Monthly means data sets from satellite, ground-based and model records used in the article entitled:...
Trends in the vertical distribution of ozone are reported and compared for a number of new and recen...
International audienceTrends in ozone columns and vertical distributions were calculated for the per...
Ozone profile trends over the period 2000 to 2016 from several merged satellite ozone data sets and ...
The trends and variability of ozone are assessed over a northern mid-latitude station, Haute-Provenc...
This Report summarises the main results obtained during the first year of the LOTUS activity, which...
We present an updated perspective on near-global total ozone trends for the period 1995–2020. We use...
International audienceNOAA’s ground-based (GB) remote sensing and in situ instruments continuously t...