Links
- Leibniz-Institut für Atmosphärenphysik e. V. Kühlungsborn - Veröffentlichungen
- Statistiken und Vorhersagen (leuchtende-nachtwolken.info)
- Leibniz-Institut für Atmosphärenphysik e. V. Kühlungsborn - Kameras und Radare live
- NLC-Beobachtungen und -Diskussionen (Forum meteoros.de)
- Internationale Facebook-Gruppe der NLC-Beobachter
- Leuchtende Nachtwolken in Mitteleuropa 2025 (leuchtende-nachtwolken.info)
- Homepage von SOVA-S
- Die Atmosphäre besser verstehen: Neue Erdbeobachtungsmission SOVA-S (Pressemitteilung des DLR)
- Grünes Licht für die nächsten beiden Scout-Missionen der ESA (Pressemitteilung der ESA)
Literatur
- Karlsson; B. & Shepherd, T. G. (2018): The improbable clouds at the edge of the atmosphere - The combined effects of ozone, sunlight, and atmospheric waves turn the near void of Earth’s mesosphere into a refrigerator capable of producing vast clouds of water ice, Physics Today, 71, 30
- Lange, A. et al. (2022): On the colour of noctilucent clouds, ANGEO, 40, 407
- Schäfer, B., Baumgarten, G. & Fiedler, J. (2020): Small-scale structures in noctilucent clouds observed by lidar, Journal of Atmospheric and Solar-Terrestrial Physics, 208, 105384
- Vellalassery A. et al. (2026): Influence of atmospheric vertical wind and turbulence on noctilucent Clouds, Front. Astron. Space Sci., 13, 1721062
- Fiedler, J. & Baumgarten, G. (2018): Solar and lunar tides in noctilucent clouds as determined by ground-based lidar, ACP, 18, 16051
- Hervig, M. E. et al. (2019). The missing solar cycle response of the polar summer mesosphere. Geophysical Research Letters, 46, 10132
- Vellalassery, A. et al. (2023): Greenhouse gas effects on the solar cycle response of water vapour and noctilucent clouds, Ann. Geophys., 41, 289
- On the anthropogenic impact on long-term evolution of noctilucent Clouds, Geophysical Research Letters, 45, 6681
- Lübken, F.-J., Baumgarten, G. & Berger, U. (2021): Long term trends of mesopheric ice layers: A model study, Journal of Atmospheric and Solar-Terrestrial Physics, 214, 105378
