Publication du projet ARCA

  1. Baiman, R., Winters, A.C., Pohl, B., Favier, V., Wille, J.D., Clem, K.R., 2024. Synoptic and planetary-scale dynamics modulate antarctic atmospheric river precipitation intensity. Communications Earth & Environment 5, 127. https://doi.org/10.1038/s43247-024-01307-9
  2. Barthélemy, L., Codron, F., Wille, J., Favier, V., Clem, K.R., 2026. Future Atmospheric Rivers in Antarctica : Characteristics and Impacts With the IPSL Model. Journal of Geophysical Research : Atmospheres 131, e2025JD043398. https://doi.org/10.1029/2025JD043398
  3. Bromwich, D. H., and Coauthors, 2024 : Winter Targeted Observing Periods during the Year of Polar Prediction in the Southern Hemisphere (YOPP-SH). Bull. Amer. Meteor. Soc., 105, E1662–E1684, https://doi.org/10.1175/BAMS-D-22-0249.1.
  4. Bozkurt, D., Opazo, C., Marín, J.C., Clem, K.R., Pohl, B., Buffet, V., Favier, V., Carrasco-Escaff, T., Barrett, B.S., 2026. A Multi-Method Antarctic Atmospheric Blocking Dataset (1979–2024). Earth Syst. Sci. Data Discuss. 1–33. https://doi.org/10.5194/essd-2026-55
  5. Buffet, V., Favier, V., Pohl, B., Wille, J.D., 2026. Curved atmospheric rivers and their moisture remnants : a new detection tool for Antarctica. EGUsphere 2026, 1–32. https://doi.org/10.5194/egusphere-2025-6365
  6. Buffet, V., Pohl, B., Prince, H.D., Favier, V., Clem, K., Saucède, T., Jomelli, V., 2025. Atmospheric Rivers at the Kerguelen Islands : A Story through Weather Types. J. Appl. Meteorol. Climatol. 64, 299–315. https://doi.org/10.1175/JAMC-D-24-0018.1
  7. Clem, K.R., Raphael, M.N., Adusumilli, S., Baiman, R., Banwell, A.F., Barreira, S., Beadling, R.L., Colwell, S., Coy, L., Datta, R.T., Laat, J.D., Dunmire, D., Fogt, R.L., Freeman, N.M., Fricker, H.A., Gardner, A.S., Johnson, B., Keller, L.M., Kramarova, N.A., Lazzara, M.A., Lieser, J.L., MacFerrin, M., MacGilchrist, G.A., MacLennan, M.L., Massom, R.A., Mazloff, M.R., Mote, T.L., Nash, E.R., Newman, P.A., Norton, T., Petropavlovskikh, I., Pitts, M., Reid, P., Santee, M.L., Scambos, T.A., Shi, J.-R., Stammerjohn, S., Strahan, S.E., Thompson, A.F., Wille, J.D., Wilson, E., 2022. Antarctica and the Southern Ocean. Bulletin of the American Meteorological Society 103, S307–S340. https://doi.org/10.1175/BAMS-D-22-0078.1
  8. Collow, A.B.M., Shields, C.A., Guan, B., Kim, S., Lora, J.M., McClenny, E.E., Nardi, K., Payne, A., Reid, K., Shearer, E.J., Tomé, R., Wille, J.D., Ramos, A.M., Gorodetskaya, I.V., Leung, L.R., O’Brien, T.A., Ralph, F.M., Rutz, J., Ullrich, P.A., Wehner, M., 2022b. An Overview of ARTMIP’s Tier 2 Reanalysis Intercomparison : Uncertainty in the Detection of Atmospheric Rivers and Their Associated Precipitation. Journal of Geophysical Research : Atmospheres 127, e2021JD036155. https://doi.org/10.1029/2021JD036155
  9. Crockart, C.K., Vance, T.R., Fraser, A.D., Abram, N.J., Criscitiello, A.S., Curran, M.A.J., Favier, V., Gallant, A.J.E., Kittel, C., Kjær, H.A., Klekociuk, A.R., Jong, L.M., Moy, A.D., Plummer, C.T., Vallelonga, P.T., Wille, J., Zhang, L., 2021. El Niño–Southern Oscillation signal in a new East Antarctic ice core, Mount Brown South. Climate of the Past 17, 1795–1818. https://doi.org/10.5194/cp-17-1795-2021
  10. Donat-Magnin, M., Jourdain, N., Gallée, H., Amory, C., Kittel, C., Fettweis, X., Wille, J., Favier, V., Drira, A., Agosta, C., 2020. Interannual variability of summer surface mass balance and surface melting in the Amundsen sector, West Antarctica. The Cryosphere 14, 229–249. https://doi.org/10.5194/tc-14-229-2020
  11. Dutrievoz, N., Agosta, C., Risi, C., Vignon, É., Nguyen, S., Landais, A., Fourré, E., Leroy-Dos Santos, C., Casado, M ., Masson-Delmotte, V., Jouzel, J., Duos, T., Ollivier, I., Stenni, B., Dreossi, G., Masiol, M., Minster, B. Prié, F. 2025. Antarctic water stable isotopes in the global atmospheric model LMDZ6 : From climatology to boundary layer processes. Journal of Geophysical Research : Atmospheres, 130, e2024JD042073. https://doi.org/10.1029/2024JD04207
  12. Dutrievoz, N., Agosta, C., Davrinche, C., Landais, A., Nguyen, S., Vignon, É., Ollivier, I., Leroy-Dos Santos, C., Fourré, E., Casado, M., Wille, J., Favier, V., Minster, B., Prié, F., 2026. Water vapour isotope anomalies during an atmospheric river event at Dome C, East Antarctica. The Cryosphere 20, 1025–1046. https://doi.org/10.5194/tc-20-1025-2026
  13. Frame, E., Pohl, B., Amory, C., Fettweis, X., Buffet, V., Bernard, E., Champagne, O., Favier, V., 2026. Rainfall and Rain-on-Snow Events Over Greenland in Summer : Climatology, Trends, Synoptics. Journal of Geophysical Research : Atmospheres 131, e2025JD044726. https://doi.org/10.1029/2025JD044726
  14. Gorodetskaya, I.V., Durán-Alarcón, C., González-Herrero, S., Clem, K.R., Zou, X., Rowe, P., Rodriguez Imazio, P., Campos, D., Leroy-Dos Santos, C., Dutrievoz, N., Wille, J.D., Chyhareva, A., Favier, V., Blanchet, J., Pohl, B., Cordero, R.R., Park, S.-J., Colwell, S., Lazzara, M.A., Carrasco, J., Gulisano, A.M., Krakovska, S., Ralph, F.M., Dethinne, T., Picard, G., 2023. Record-high Antarctic Peninsula temperatures and surface melt in February 2022 : a compound event with an intense atmospheric river. npj Clim Atmos Sci 6, 202. https://doi.org/10.1038/s41612-023-00529-6
  15. Lapere, R., Thomas, J.L., Favier, V., Angot, H., Asplund, J., Ekman, A.M.L., Marelle, L., Raut, J.-C., Da Silva, A., Wille, J.D., Zieger, P., 2024. Polar Aerosol Atmospheric Rivers : Detection, Characteristics, and Potential Applications. Journal of Geophysical Research : Atmospheres 129, e2023JD039606. https://doi.org/10.1029/2023jd039606
  16. Leroy-Dos Santos, C., Fourré, E., Agosta, C., Casado, M., Cauquoin, A., Werner, M., Minster, B., Prié, F., Jossoud, O., Petit, L., Landais, A., 2023. From atmospheric water isotopes measurement to firn core interpretation in Adélie Land : a case study for isotope-enabled atmospheric models in Antarctica. The Cryosphere 17, 5241–5254. https://doi.org/10.5194/tc-17-5241-2023
  17. Maclennan, M.L., Lenaerts, J.T.M., Shields, C., Wille, J.D., 2022. Contribution of Atmospheric Rivers to Antarctic Precipitation. Geophysical Research Letters 49, e2022GL100585. https://doi.org/10.1029/2022GL100585
  18. Maclennan, M.L., Lenaerts, J.T.M., Shields, C.A., Hoffman, A.O., Wever, N., Thompson-Munson, M., Winters, A.C., Pettit, E.C., Scambos, T.A., Wille, J.D., 2023. Climatology and surface impacts of atmospheric rivers on West Antarctica. The Cryosphere 17, 865–881. https://doi.org/10.5194/tc-17-865-2023
  19. Maclennan, M.L., Winters, A.C., Shields, C.A. et al. Rising atmospheric moisture escalates the future impact of atmospheric rivers in the Antarctic climate system. Commun Earth Environ 6, 369 (2025). https://doi-org.insu.bib.cnrs.fr/10.1038/s43247-025-02333-x
  20. Mattingly, K.S., Turton, J.V., Wille, J.D., Noël, B., Fettweis, X., Rennermalm, Å.K., Mote, T.L., 2023. Increasing extreme melt in northeast Greenland linked to foehn winds and atmospheric rivers. Nat Commun 14, 1743. https://doi.org/10.1038/s41467-023-37434-8
  21. Pohl, B., Favier, V., Wille, J., Udy, D.G., Vance, T.R., Pergaud, J., Dutrievoz, N., Blanchet, J., Kittel, C., Amory, C., Krinner, G., Codron, F., 2021a. Relationship Between Weather Regimes and Atmospheric Rivers in East Antarctica. Journal of Geophysical Research : Atmospheres 126, e2021JD035294. https://doi.org/10.1029/2021JD035294
  22. Pohl, B., Prince, H.D., Wille, J., Kingston, D.G., Cullen, N.J., Fauchereau, N., 2023. Atmospheric Rivers and Weather Types in Aotearoa New Zealand : A Two-Way Story. Journal of Geophysical Research : Atmospheres 128, e2022JD037209. https://doi.org/10.1029/2022JD037209
  23. Rush, W.D., Lora, J.M., Skinner, C.B., Menemenlis, S.A., Shields, C.A., Ullrich, P., O’Brien, T.A., Brands, S., Guan, B., Mattingly, K.S., McClenny, E., Nardi, K., Nellikkattil, A., Ramos, A.M., Reid, K.J., Shearer, E., Tomé, R., Wille, J.D., Leung, L.R., Ralph, F.M., Rutz, J.J., Wehner, M., Zhang, Z., Lu, M., Quagraine, K.T., 2025. Atmospheric River Detection Under Changing Seasonality and Mean-State Climate : ARTMIP Tier 2 Paleoclimate Experiments. Journal of Geophysical Research : Atmospheres 130, e2024JD042222. https://doi.org/10.1029/2024JD042222
  24. Shields, C.A., Wille, J.D., Marquardt Collow, A.B., Maclennan, M., Gorodetskaya, I.V., 2022. Evaluating Uncertainty and Modes of Variability for Antarctic Atmospheric Rivers. Geophysical Research Letters 49, e2022GL099577. https://doi.org/10.1029/2022GL099577
  25. Simon, S., Turner, J., Thamban, M., Wille, J.D., Deb, P., 2024. Spatiotemporal Variability of Extreme Precipitation Events and Associated Atmospheric Processes Over Dronning Maud Land, East Antarctica. Journal of Geophysical Research : Atmospheres 129, e2023JD038993. https://doi.org/10.1029/2023JD038993
  26. Stefanini, C., Macelloni, G., Leduc-Leballeur, M., Favier, V., Pohl, B., Picard, G., 2024. Extreme events of snow grain size increase in East Antarctica and their relationship with meteorological conditions. The Cryosphere 18, 593–608. https://doi.org/10.5194/tc-18-593-2024
  27. Tcheng, T., Fourré, E., Leroy-Dos-Santos, C., Parrenin, F., Le Meur, E., Prié, F., Jossoud, O., Jacob, R., Minster, B., Magand, O., Agosta, C., Dutrievoz, N., Favier, V., Baubant, L., Lassalle-Bernard, C., Casado, M., Werner, M., Cauquoin, A., Arnaud, L., Jourdain, B., Picard, G., Bouchet, M., Landais, A., 2026. Multiproxy analyses of multiple firn cores from coastal Adélie Land covering the last 40 years. The Cryosphere, 20, 1599–1618, https://doi.org/10.5194/tc-20-1599-2026
  28. Turner, J., Lu, H., King, J.C., Carpentier, S., Lazzara, M., Phillips, T., Wille, J., 2022. An Extreme High Temperature Event in Coastal East Antarctica Associated With an Atmospheric River and Record Summer Downslope Winds. Geophysical Research Letters 49, e2021GL097108. https://doi.org/10.1029/2021GL097108
  29. Vance, T.R., Abram, N.J., Criscitiello, A.S., Crockart, C.K., DeCampo, A., Favier, V., Gkinis, V., Harlan, M., Jackson, S.L., Kjær, H.A., Long, C.A., Nation, M.K., Plummer, C.T., Segato, D., Spolaor, A., Vallelonga, P.T., 2024. An annually resolved chronology for the Mount Brown South ice cores, East Antarctica. Climate of the Past 20, 969–990. https://doi.org/10.5194/cp-20-969-2024
  30. Verfaillie, D., Pelletier, C., Goosse, H., Jourdain, N.C., Bull, C.Y.S., Dalaiden, Q., Favier, V., Fichefet, T., Wille, J.D., 2022a. The circum-Antarctic ice-shelves respond to a more positive Southern Annular Mode with regionally varied melting. Commun Earth Environ 3, 1–12. https://doi.org/10.1038/s43247-022-00458-x
  31. Wille, J.D., Alexander, S.P., Amory, C., Baiman, R., Barthélemy, L., Bergstrom, D.M., Berne, A., Binder, H., Blanchet, J., Bozkurt, D., Bracegirdle, T.J., Casado, M., Choi, T., Clem, K.R., Codron, F., Datta, R., Di Battista, S., Favier, V., Francis, D., Fraser, A.D., Fourré, E., Garreaud, R.D., Genthon, C., Gorodetskaya, I.V., González-Herrero, S., Heinrich, V.J., Hubert, G., Joos, H., Kim, S.-J., King, J.C., Kittel, C., Landais, A., Lazzara, M., Leonard, G.H., Lieser, J.L., Maclennan, M., Mikolajczyk, D., Neff, P., Ollivier, I., Picard, G., Pohl, B., Ralph, F.M., Rowe, P., Schlosser, E., Shields, C.A., Smith, I.J., Sprenger, M., Trusel, L., Udy, D., Vance, T., Vignon, É., Walker, C., Wever, N., Zou, X., 2024b. The Extraordinary March 2022 East Antarctica ”Heat” Wave. Part I : Observations and Meteorological Drivers. Journal of Climate 37, 757–778. https://doi.org/10.1175/JCLI-D-23-0175.1
  32. Wille, J.D., Alexander, S.P., Amory, C., Baiman, R., Barthélemy, L., Bergstrom, D.M., Berne, A., Binder, H., Blanchet, J., Bozkurt, D., Bracegirdle, T.J., Casado, M., Choi, T., Clem, K.R., Codron, F., Datta, R., Battista, S.D., Favier, V., Francis, D., Fraser, A.D., Fourré, E., Garreaud, R.D., Genthon, C., Gorodetskaya, I.V., González-Herrero, S., Heinrich, V.J., Hubert, G., Joos, H., Kim, S.-J., King, J.C., Kittel, C., Landais, A., Lazzara, M., Leonard, G.H., Lieser, J.L., Maclennan, M., Mikolajczyk, D., Neff, P., Ollivier, I., Picard, G., Pohl, B., Ralph, F.M., Rowe, P., Schlosser, E., Shields, C.A., Smith, I.J., Sprenger, M., Trusel, L., Udy, D., Vance, T., Vignon, É., Walker, C., Wever, N., Zou, X., 2024a. The Extraordinary March 2022 East Antarctica ”Heat” Wave. Part II : Impacts on the Antarctic Ice Sheet. Journal of Climate 37, 779–799. https://doi.org/10.1175/JCLI-D-23-0176.1
  33. Wille, J.D., Favier, V., Gorodetskaya, I.V., Agosta, C., Baiman, R., Barrett, J.E., Barthelemy, L., Boza, B., Bozkurt, D., Casado, M., Chyhareva, A., Clem, K.R., Codron, F., Datta, R.T., Durán-Alarcón, C., Francis, D., Hoffman, A.O., Kolbe, M., Krakovska, S., Linscott, G., Maclennan, M.L., Mattingly, K.S., Mu, Y., Pohl, B., Santos, C.L.-D., Shields, C.A., Toker, E., Winters, A.C., Yin, Z., Zou, X., Zhang, C., Zhang, Z., 2025. Atmospheric rivers in Antarctica. Nat Rev Earth Environ 6, 178–192. https://doi.org/10.1038/s43017-024-00638-7
  34. Wille, J.D., Favier, V., Gorodetskaya, I.V., Agosta, C., Kittel, C., Beeman, J.C., Jourdain, N.C., Lenaerts, J.T.M., Codron, F., 2021b. Antarctic Atmospheric River Climatology and Precipitation Impacts. Journal of Geophysical Research : Atmospheres 126, e2020JD033788. https://doi.org/10.1029/2020JD033788
  35. Wille, J.D., Favier, V., Jourdain, N.C., Kittel, C., Turton, J.V., Agosta, C., Gorodetskaya, I.V., Picard, G., Codron, F., Santos, C.L.-D., Amory, C., Fettweis, X., Blanchet, J., Jomelli, V., Berchet, A., 2022a. Intense atmospheric rivers can weaken ice shelf stability at the Antarctic Peninsula. Commun Earth Environ 3, 1–14. https://doi.org/10.1038/s43247-022-00422-9
  36. Wille, J.D., Pohl, B., Favier, V., Winters, A.C., Baiman, R., Cavallo, S.M., Leroy-dos Santos, C., Clem, K., Udy, D.G., Vance, T.R., Gorodetskaya, I., Codron, F., Berchet, A., 2024c. Examining Atmospheric River Life Cycles in East Antarctica. Journal of Geophysical Research : Atmospheres 129, e2023JD039970. https://doi.org/10.1029/2023JD039970
  37. Zou, X., Rowe, P.M., Gorodetskaya, I., Bromwich, D.H., Lazzara, M.A., Cordero, R.R., Zhang, Z., Kawzenuk, B., Cordeira, J.M., Wille, J.D., Ralph, F.M., Bai, L.-S., 2023. Strong Warming Over the Antarctic Peninsula During Combined Atmospheric River and Foehn Events : Contribution of Shortwave Radiation and Turbulence. Journal of Geophysical Research : Atmospheres 128, e2022JD038138. https://doi.org/10.1029/2022JD038138

Other accepted publication :

Bozkurt, D., Opazo, C., Marín, J.C., Clem, K.R., Pohl, B., Buffet, V., Favier, V., Carrasco-Escaff, T., Barrett, B.S., 2026. A Multi-Method Antarctic Atmospheric Blocking Dataset (1979–2024). Earth Syst. Sci. Data Discuss. 1–33. https://doi.org/10.5194/essd-2026-55

Mis à jour le 14 juillet 2026