TY - JOUR
T1 - Anthropogenic aerosols can shape the winter mid-latitude cyclone tracks
AU - Cao, Dianbin
AU - Xu, Dongze
AU - Lin, Yanluan
AU - Deng, Yi
AU - Chen, Xuelong
AU - Zhang, Qiang
AU - Gao, Meng
AU - Zhang, Xu
N1 - This study and D.C. were supported by the Excellent Research Group Program for Tibetan Plateau Earth System (Grant No. 42588201). D.C. was also supported by the National Natural Science Foundation of China (Grant No. U2442213). Y.L. was supported by the National Natural Science Foundation of China (Grant No. 42130603). Y.D. was supported by the U.S. National Science Foundation (NSF) through Grant No. AGS-2032532 and by the U.S. National Oceanic and Atmospheric Administration (NOAA) through Grant No. NA22OAR4310606. We also thank the editor and the two anonymous reviewers for their thoughtful and constructive comments, which significantly improved the quality of this paper.
Publisher Copyright:
© The Author(s) 2026.
https://doi.org/10.1038/s41612-026-01377-w
PY - 2026/3/18
Y1 - 2026/3/18
N2 - Mid-latitude cyclones are “parent storms” of various weather hazards and contribute significantly to the moisture and heat intrusion into the Arctic. Anthropogenic aerosols are known to affect cyclone intensities and their associated precipitation, but their impacts on cyclone tracks remain largely unclear. Here, based on both observational data diagnosis and global climate model simulations, we show that anthropogenic aerosols over East Asia can lead to a significant poleward drift of mid-latitude cyclone tracks in winter over the North Pacific. By suppressing precipitation in the southeastern sector of cyclones and enhancing it in the northeastern sector, aerosols increase the positive potential vorticity tendency northeast of the cyclones, thereby driving their poleward drift. This might give rise to more cyclones migrating into the Arctic over the North Pacific, reducing the Arctic sea ice extent in recent decades. In the future, efforts to reduce aerosol emissions in East Asia could potentially mitigate the poleward migration of the storm track driven by global warming.
AB - Mid-latitude cyclones are “parent storms” of various weather hazards and contribute significantly to the moisture and heat intrusion into the Arctic. Anthropogenic aerosols are known to affect cyclone intensities and their associated precipitation, but their impacts on cyclone tracks remain largely unclear. Here, based on both observational data diagnosis and global climate model simulations, we show that anthropogenic aerosols over East Asia can lead to a significant poleward drift of mid-latitude cyclone tracks in winter over the North Pacific. By suppressing precipitation in the southeastern sector of cyclones and enhancing it in the northeastern sector, aerosols increase the positive potential vorticity tendency northeast of the cyclones, thereby driving their poleward drift. This might give rise to more cyclones migrating into the Arctic over the North Pacific, reducing the Arctic sea ice extent in recent decades. In the future, efforts to reduce aerosol emissions in East Asia could potentially mitigate the poleward migration of the storm track driven by global warming.
UR - https://www.scopus.com/pages/publications/105038372193
U2 - 10.1038/s41612-026-01377-w
DO - 10.1038/s41612-026-01377-w
M3 - Journal article
SN - 2397-3722
VL - 9
JO - npj Climate and Atmospheric Science
JF - npj Climate and Atmospheric Science
IS - 1
M1 - 109
ER -