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A robust aerosol impact on clouds along the subtropical to tropical transition

  • Netta Yeheskel
  • , Matthew W. Christensen
  • , Fabian Hoffmann
  • , Graham Feingold
  • , Guy Dagan*
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

Marine clouds undergo a transition from subtropical stratocumulus (Sc) to shallow cumulus (Cu) and eventually to deep convective (DC) systems as air masses advect from the subtropics towards the deep tropics. How aerosols modulate this Lagrangian cloud evolution remains largely uncertain. Here we use both 5 years of satellite observations mapped along 8 d Lagrangian trajectories and complementary large-eddy simulations from 9 initiation locations across the Northeast Pacific, Southeast Pacific, and Southeast Atlantic. This Lagrangian framework allows us to quantify the aerosol effect and its co-variability with meteorological conditions on cloud microphysics, macrophysics, and top-of-atmosphere radiation through the full Sc-Cu-DC transition. We show that increasing aerosol concentrations leads to deeper and more reflective clouds throughout this cloud transition. Examining the thermodynamic evolution along the trajectory indicates a well-known trend: enhanced moistening near the boundary-layer top and lower free troposphere under polluted conditions, suggesting that part of the covariability between aerosol and meteorological conditions may be internally driven. The agreement between model simulations and satellite data alongside the multi-basin coherence of the results indicates that aerosols systematically amplify cloud depth and reflectivity during the subtropical–to–tropical cloud transition.

Original languageEnglish
Pages (from-to)8765-8781
Number of pages17
JournalAtmospheric Chemistry and Physics
Volume26
Issue number12
DOIs
StatePublished - 23 Jun 2026

Bibliographical note

Publisher Copyright:
© 2026 Netta Yeheskel et al.

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