On the links between ice nucleation, cloud phase, and climate sensitivity in CESM2

Ice nucleation in mixed-phase clouds has been identified as a critical factor in projections of future climate. Here we explore how this process influences climate sensitivity using the Community Earth System Model 2 (CESM2). We find that ice nucleation affects simulated cloud feedbacks over most regions and levels of the troposphere, not just extratropical low clouds. However, with present-day global mean cloud phase adjusted to replicate satellite retrievals, similar total cloud feedback is attained whether ice nucleation is simulated as aerosol-sensitive, insensitive, or absent. These model experiments all result in a strongly positive total cloud feedback, as in the default CESM2. A microphysics update from CESM1 to CESM2 had substantially weakened ice nucleation, due partly to a model issue. Our findings indicate that this update reduced global cloud phase bias, with CESM2's high climate sensitivity reflecting improved mixed-phase cloud representation.

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Related Dataset #1 : CESM2 simulation output used in the study "On the links between ice nucleation, cloud phase, and climate sensitivity in CESM2"

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Publication Date 2023-09-16T00:00:00
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Metadata Date 2025-07-11T15:14:30.130919
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Metadata Language eng; USA
Suggested Citation . (2023). On the links between ice nucleation, cloud phase, and climate sensitivity in CESM2. UCAR/NCAR - Library. https://n2t.org/ark:/85065/d7j67mzt. Accessed 26 January 2026.

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