A Top‐Down View of Global and Regional Carbon Budgets From an Ensemble of Atmospheric Inversions van der Woude, A.M., et al. (2026), A Top‐Down View of Global and Regional Carbon Budgets From an Ensemble of Atmospheric Inversions, Global Biogeochem. Cycles, 40, e2025GB008779, doi:10.1029/2025GB008779. Read more about A Top‐Down View of Global and Regional Carbon Budgets From an Ensemble of Atmospheric Inversions
Sea spray Aerosol over the remote Oceans has low Organic content Lawler, M.J., et al. (2024), Sea spray Aerosol over the remote Oceans has low Organic content, AGU Advances, 5, e2024AV001215, doi:10.1029/2024AV001215. Read more about Sea spray Aerosol over the remote Oceans has low Organic content
The Total Carbon Column Observing Network's GGG2020 data version Laughner, J., et al. (2024), The Total Carbon Column Observing Network's GGG2020 data version, Earth Syst. Sci. Data, 16, 2197-2260, doi:10.5194/essd-16-2197-2024. Read more about The Total Carbon Column Observing Network's GGG2020 data version
Seasonal tropospheric distribution and air-sea fluxes of atmospheric potential oxygen from global airborne observations Jin, Y., et al. (2023), Seasonal tropospheric distribution and air-sea fluxes of atmospheric potential oxygen from global airborne observations, Global Biogeochem. Cycles, 37, e2023GB007827, doi:10.1029/2023GB007827. Read more about Seasonal tropospheric distribution and air-sea fluxes of atmospheric potential oxygen from global airborne observations
The Atmospheric Potential Oxygen forward Model Intercomparison Project (APO-MIP1): evaluating simulated atmospheric transport of air-sea gas exchange tracers and APO flux products Jin, Y., et al. (2025), The Atmospheric Potential Oxygen forward Model Intercomparison Project (APO-MIP1): evaluating simulated atmospheric transport of air-sea gas exchange tracers and APO flux products, Geosci. Model. Dev., doi:10.5194/gmd-18-5937-2025. Read more about The Atmospheric Potential Oxygen forward Model Intercomparison Project (APO-MIP1): evaluating simulated atmospheric transport of air-sea gas exchange tracers and APO flux products
Atmospheric oxygen constraints on Southern Ocean productivity and drivers of carbon uptake Jin, Y., et al. (2026), Atmospheric oxygen constraints on Southern Ocean productivity and drivers of carbon uptake, Nature Geosci., doi:10.1038/s41561-026-01944-z. Read more about Atmospheric oxygen constraints on Southern Ocean productivity and drivers of carbon uptake
Nonlinear and Non‐Gaussian Ensemble Assimilation of MOPITT CO Gaubert, B., et al. (2024), Nonlinear and Non‐Gaussian Ensemble Assimilation of MOPITT CO, J. Geophys. Res., 129, e2023JD040647, doi:10.1029/2023JD040647. Read more about Nonlinear and Non‐Gaussian Ensemble Assimilation of MOPITT CO
The Cloud Indicator: A novel algorithm for automatic detection and classification of clouds using airborne in situ observations Dollner , M., et al. (2024), The Cloud Indicator: A novel algorithm for automatic detection and classification of clouds using airborne in situ observations, Atmos. Res., 308, 2024, doi:10.1016/j.atmosres.2024.107504. Read more about The Cloud Indicator: A novel algorithm for automatic detection and classification of clouds using airborne in situ observations
Evolution of Reactive Organic Compounds and Their Potential Health Risk in Wildfire Smoke Published as part of Environmental Science & Technology special issue “Wildland Fires: Emissions, Chemistry, Contamination, Climate, and Human Health”. Pye, H.O.T., et al. (2024), Evolution of Reactive Organic Compounds and Their Potential Health Risk in Wildfire Smoke Published as part of Environmental Science & Technology special issue “Wildland Fires: Emissions, Chemistry, Contamination, Climate, and Human Health”., Environ. Sci. Technol., 58, 19785-19796, doi:10.1021/acs.est.4c06187. Read more about Evolution of Reactive Organic Compounds and Their Potential Health Risk in Wildfire Smoke Published as part of Environmental Science & Technology special issue “Wildland Fires: Emissions, Chemistry, Contamination, Climate, and Human Health”.
Look Within: Intraplume Differences on Smoke Aerosol Aging Driven by Concentration Gradients June, N.A., et al. (2025), Look Within: Intraplume Differences on Smoke Aerosol Aging Driven by Concentration Gradients, J. Geophys. Res., 130, e2024JD042359, doi:10.1029/2024JD042359. Read more about Look Within: Intraplume Differences on Smoke Aerosol Aging Driven by Concentration Gradients