All Stories

  1. Coupling Between Sudden Stratospheric Warming and Mid-Latitude Ionosphere of European Sector - A Case Study
  2. Behaviour Of Temperature During Wintertime Reversal Of Zonal Wind 
  3. Different long-term trends of foF2 with different solar activity indices
  4. Global long-term trends in the total electron content
  5. Global long-term trends in the total electron content
  6. Large Ozone Hole in 2023 and the Hunga Tonga Volcanic Eruption
  7. Impact of increasing concentration of greenhouse gases on the upper atmosphere and ionosphere
  8. The possible connection of the large ozone hole in September 2023 with the Hunga Tonga volcanic eruption
  9. Different solar activity indices lead to different long-term trends of ionospheric parameter foF2.
  10. Search for the best solar activity index for long-term ionospheric investigations.
  11. Long-term monitoring of space climate
  12. Progress in investigating climatic change in the upper atmosphere.
  13. Sudden stratospheric warmings as revealed by meteorlogical reanalyses.
  14. The most suitable solar activity index for studying foF2 is F30
  15. Relationships between foF2 and various solar activity indices.
  16. Progress in investigating long-term trends in the upper atmosphere (a review)
  17. What is happening with the Sun - and ionospheric impact?
  18. Different optimum solar activity proxies for foF2 at middle and low latitudes
  19.  First results from comparison ERA5 and Aeolus measurements: Lidar measurements to Identify Streamers and analyze Atmospheric waves (LISA) (Aeolus+Innovation)
  20. Climatology and Long-Term Trends in the Stratospheric Temperature and Wind Using ERA5
  21. Long-Term Changes in Ionospheric Climate in Terms of foF2
  22. Understanding the Total Electron Content Variability Over Europe During 2009 and 2019 SSWs
  23. Impact of sudden stratospheric warmings on midlatitude ionosphere in 2009, 2018 and 2019
  24. Differences in regular and storm time ionospheric variability at magnetically conjugated locations of the Northern and Southern Hemisphere 
  25. What is the optimum solar proxy for long-term ionospheric studies?
  26. Comparison of Key Characteristics of Remarkable SSW Events in the Southern and Northern Hemisphere
  27. On the variability of total electron content over Europe during the 2009 and 2019 Northern Hemisphere SSWs
  28. Occurrence of discontinuities in the ozone concentration data from three reanalyses
  29. Supplementary material to "Occurrence of discontinuities in the ozone concentration data from three reanalyses"
  30. The relationship between ionospheric parameters and solar proxies is changing – when?
  31. Vertical Atmospheric Coupling during the September 2019 Antarctic Sudden Stratospheric Warming
  32. September 2019 Antarctic sudden stratospheric warming: quasi-6-day wave burst and ionospheric effects
  33. Discussion comment
  34. 27-day variation in the lower ionosphere
  35. Longitudinal structure of stationary planetary waves in the middle atmosphere – extraordinary years
  36. Unexpected Southern Hemisphere ionospheric response to geomagnetic storm of 15 August 2015
  37. Long-term trends in total electron content.
  38. Comparison of the long-term trends in stratospheric dynamics of four reanalyses
  39. Stability of solar correction for calculating ionospheric trends
  40. Comment on “Long-term trends in thermospheric neutral temperatures and density above Millstone Hill” by W. L. Oliver et al.
  41. Northern Hemisphere stratospheric winds in higher midlatitudes: longitudinal distribution and long-term trends
  42. Stratospheric winds: longitudinal distribution and long-term trends
  43. Trends in the upper atmosphere and ionosphere: Recent progress