Simulation of Record Arctic Stratospheric Ozone Depletion in 2020
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- Type
- article
- Published
- 2021-06-17
- Cited by
- 32
- References
- 80
- Access
- Open access
- OpenAlex
- https://openalex.org/W3170451781
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:236231504
Keywords
Stratosphere, Polar vortex, Ozone depletion, Ozone, Atmospheric sciences
References
- Distinguishing the impacts of ozone‐depleting substances and well‐mixed greenhouse gases on Arctic stratospheric ozone and temperature trends
- Chemical Kinetics and Photochemical Data for Use in Atmospheric Studies: Evaluation Number 18
- Severe 2011 ozone depletion assessed with 11 years of ozone, NO2, and OClO measurements at 80°N
- Arctic winter 2010/2011 at the brink of an ozone hole
- Polar processing in a split vortex: Arctic ozone loss in early winter 2012/2013
- Quasi‐Lagrangian measurements of nitric acid trihydrate formation over Antarctica
- Attribution of the Arctic ozone column deficit in March 2011
- Ozone Chemistry during the 2002 Antarctic Vortex Split
- Contrast between 1992 and 1997 high‐latitude spring Halogen Occultation Experiment observations of lower stratospheric HCl
- Nitric acid trihydrate nucleation and denitrification in the Arctic stratosphere
- Re‐formation of chlorine reservoirs in southern hemisphere polar spring
- Temperature thresholds for chlorine activation and ozone loss in the polar stratosphere
- Evolution of inorganic chlorine partitioning in the Arctic polar vortex
- Extreme ozone depletion in the 2010–2011 Arctic winter stratosphere as observed by MIPAS/ENVISAT using a 2-D tomographic approach
- A study of stratospheric chlorine partitioning based on new satellite measurements and modeling
- Arctic winter 2005: Implications for stratospheric ozone loss and climate change
- Anomalously low ozone over the Arctic
- The effect of breaking gravity waves on the dynamics and chemical composition of the mesosphere and lower thermosphere
- HALOE observations of the vertical structure of chemical ozone depletion in the Arctic Vortex during winter and early spring 1996–1997
- Future Arctic temperature and ozone: The role of stratospheric composition changes
Cited by
- Record‐Low Arctic Stratospheric Ozone in 2020: MLS Observations of Chemical Processes and Comparisons With Previous Extreme Winters
- The Remarkably Strong Arctic Stratospheric Polar Vortex of Winter 2020: Links to Record‐Breaking Arctic Oscillation and Ozone Loss
- Record‐Breaking Increases in Arctic Solar Ultraviolet Radiation Caused by Exceptionally Large Ozone Depletion in 2020
- Exceptionally Low Arctic Stratospheric Ozone in Spring 2020 as Seen in the CAMS Reanalysis
- Record low ozone values over the Arctic in boreal spring 2020
- Unprecedented Spring 2020 Ozone Depletion in the Context of 20 Years of Measurements at Eureka, Canada
- GUV long-term measurements of total ozone column and effective cloud transmittance at three Norwegian sites
- OClO as observed by TROPOMI: a comparison with meteorological parameters and PSC observations
- Chemical Evolution of the Exceptional Arctic Stratospheric Winter 2019/2020 Compared to Previous Arctic and Antarctic Winters
- Evolution of the stratospheric polar vortex edge intensity and duration in the Southern hemisphere over the 1979–2020 period
- Exceptional loss in ozone in the Arctic winter/spring of 2019/2020
- The Arctic Temperature Response to Global and Regional Anthropogenic Sulfate Aerosols
- OClO as observed by TROPOMI: a comparison with meteorological parameters and polar stratospheric cloud observations
- Evolution of the intensity and duration of the Southern Hemisphere stratospheric polar vortex edge for the period 1979–2020
- Introduction to Special Collection “The Exceptional Arctic Stratospheric Polar Vortex in 2019/2020: Causes and Consequences”
- First Retrieval of Total Ozone Columns from EMI-2 Using the DOAS Method
- Stratospheric ozone, UV radiation, and climate interactions
- Six Years of IKFS-2 Global Ozone Total Column Measurements
- Multi-year total ozone column variability at three Norwegian sites and the influence of Northern Hemisphere Climatic Indices
- Record Low Arctic Stratospheric Ozone in Spring 2020: Measurements of Ground-Based Differential Optical Absorption Spectroscopy in Ny-Ålesund during 2017-2021
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