In situ balloon-borne observations of the vertical structure of relative humidity in Asian summer monsoon cirrus clouds

Peng, D., Bian, J., Li, D., Bai, Z., Vömel, H., et al. (2026). In situ balloon-borne observations of the vertical structure of relative humidity in Asian summer monsoon cirrus clouds. Geophysical Research Letters, doi:https://doi.org/10.1029/2025gl118090

Title In situ balloon-borne observations of the vertical structure of relative humidity in Asian summer monsoon cirrus clouds
Genre Article
Author(s) D. Peng, J. Bian, D. Li, Z. Bai, Holger Vömel, F. G. Wienhold, S. Brunamonti, B. Luo, J. Zhang, Q. Li, T. Peter
Abstract The vertical structure of relative humidity within cirrus clouds in the upper troposphere remained unexplored, owing to measurement challenges. Twelve years of balloon-borne simultaneous measurements of upper tropospheric humidity and optical particle backscatter during the Asian summer monsoon are used to consolidate our understanding of cirrus. Thin cirrus are typically supersaturated with respect to ice (median RHi ≳ 100%) in their upper parts, have a median RHi ≈ 100% toward their center, and RHi < 100% below. Most RHi remain below 120%, suggesting that these clouds form predominantly by heterogeneous ice nucleation. In rare cases, RHi > 140% enables homogeneous nucleation. Thicker cirrus show higher backscatter, indicating numerous particles that likely nucleated homogeneously in deep convection. These clouds slowly evaporate, as evidenced by slight subsaturation (RHi ≲ 100%) throughout their vertical extent. Cloud-base RHi ≈ 70% suggest rapid crystal settling and evaporation. This data set may serve as reliable microphysical reference.
Publication Title Geophysical Research Letters
Publication Date Jan 16, 2026
Publisher's Version of Record https://doi.org/10.1029/2025gl118090
OpenSky Citable URL https://n2t.net/ark:/85065/d7kw5mjw
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EOL Affiliations ISF

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