Article citationsMore>>
Stanford, M.W., Fridlind, A.M., Silber, I., Ackerman, A.S., Cesana, G., Mülmenstädt, J., et al. (2023) Earth-System-Model Evaluation of Cloud and Precipitation Occurrence for Supercooled and Warm Clouds over the Southern Ocean’s Macquarie Island. Atmospheric Chemistry and Physics, 23, 9037-9069.
https://doi.org/10.5194/acp-23-9037-2023
has been cited by the following article:
-
TITLE:
A Warming Arctic Will Not Affect Supercooling Levels of Cloud Water Droplets
AUTHORS:
Alma Calow, Michaiah Sands, Diego D’Amato, Caleb Hope, Mathilde Forrest, Benji McGregor, Ainsley Shore, Peter W. Wilson
KEYWORDS:
Arctic, Supercooling, Water, Droplets, Freezing
JOURNAL NAME:
Atmospheric and Climate Sciences,
Vol.16 No.3,
May
29,
2026
ABSTRACT: It is now well understood that Arctic regions are warming more rapidly than other areas of Earth. Cloud formation and levels of supercooling of water droplets in clouds might be thought vulnerable to such change. We discuss here the lack of affect the highest temperature reached by the droplets has on the supercooling ability and so show that the warming Arctic is unable to affect the actual freezing temperature of clouds, at a given level of supercooling and so with a given level of nucleation site(s).