Publications CMIP6

Publications CMIP6

Liste non exhaustive des publications classées par ordre alphabétique d'auteurs

Amos M., P. Young, J. Scott Hosking, J.-F. Larmarque, N. Abraham, H. Akiyoshi, A. Archibald, S. Bekki, M. Deushi, P. Jöckel, D. Kinnison, O. Kirner, M. Kunze, M. Marchand, D. Plummer, D. Saint-Martin, K. Sudo, S. Tilmes and Y. Yamashita (2020) Projecting ozone hole recovery using an ensemble of chemistry–climate models weighted by model performance and independence. Atmos. Chem. Phys., 20, 9961–9977, 2020. https://doi.org/10.5194/acp-20-9961-2020

Arora, V. K., A. Katavouta, R.G. Williams, C.D. Jones, V. Brovkin, P. Friedlingstein, J. Schwinger, L. Bopp, O. Boucher, P. Cadule, M.A. Chamberlain, J.R. Christian, C. Delire, R.A. Fisher, T. Hajima, T. Ilyina, E. Joetzjer, M. Kawamiya, C. Koven, J. Krasting, R.M. Law, D.M. Lawrence, A. Lenton, K. Lindsay, J. Pongratz, T. Raddatz, R. Séférian, K. Tachiiri, J.F. Tjiputra, A. Wiltshire, T. Wu, and T. Ziehn (2020) Carbon-concentration and carbon-climate feedbacks in CMIP6 models, and their comparison to CMIP5 models. Biogeosciences, 17, 4173–4222, 2020. doi: 10.5194/bg-17-4173-2020.

Ayarzagüena, B., A. J. Charlton-Perez, A. H. Butler, P. Hitchcock, I.R. Simpson, L. M. Polvan, N. Butchart, E. P. Gerber, L. Gray, B. Hassler, P. Lin, F. Lott, E. Manzini, R. Mizuta, C. Orbe, S. Osprey, D. Saint-Martin, M.Sigmond, M. Taguchi, E. M. Volodin, S. Watanabe (2020) Uncertainty in the response of sudden stratospheric warmings and stratosphere‐troposphere coupling to quadrupled CO2 concentrations in CMIP6 models. Journal of Geophysical Research: Atmospheres, 125, e2019JD032345, 2020. doi: 10.1029/2019JD032345.

Ayarzagüena, B., L. M. Polvani, U. Langematz, H. Akiyoshi, S. Bekki, N. Butchart, M. Dameris, M. Deushi, S. C. Hardiman, P. Jöckel, A. Klekociuk, M. Marchand, M. Michou, O. Morgenstern, Fiona M. O'Connor, L. Oman, D. Plummer, L. Revell, E. Rozanov, D. Saint-Martin, J. Scinocca, A. Stenke, K. Stone, Y. Yamashita, K. Yoshida, and G.Zeng (2018) No robust evidence of future changes in major stratospheric sudden warmings: a multi-model assessment from CCMI. Atmos. Chem. Phys., 18, 11277–11287, 2018. doi: 10.5194/acp-18-11277-2018

Balkanski, Y., R. Bonnet, O. Boucher, R. Checa-Garcia, and J. Servonnat (2021) Dust induced atmospheric absorption improves tropical precipitations in climate models, Atmospheric Chemistry and Physics, in review, 2021. doi: 10.5194/acp-2021-12

Brierley, C. M., A. Zhao, S. P. Harrison, P. Braconnot, C. J. R. Williams, D. J. R. Thornalley, X. Shi, J.-Y. Peterschmitt, R. Ohgaito, D. S. Kaufman, M. Kageyama, J. C. Hargreaves, M. P. Erb, J. Emile-Geay, R. D'Agostino, D. Chandan, M. Carré, P. J. Bartlein, W. Zheng, Z. Zhang, Q. Zhang, H. Yang, E. M. Volodin, R. A. Tomas, C. Routson, W. R. Peltier, B. Otto-Bliesner, P. A. Morozova, N. P. McKay, G. Lohmann, A. N. Legrande, C. Guo, J. Cao, E. Brady, J. D. Annan, and A. Abe-Ouchi (2020) Large-scale features and evaluation of the PMIP4-CMIP6 midHolocene simulations, Clim. Past Discuss., 2020, 1-35, 2020.  doi: 10.5194/cp-16-1847-2020

Bony, S., J.-L. Dufresne, H. Le Treut, J.-J. Morcrette and C. Senior  (2004) On dynamic and thermodynamic components of cloud changes, Climate Dynamics, vol 22 : 71–86. doi: 10.1007/s00382-003-0369-6

Bony, S. and Dufresne, J.-L. (2005) Marine boundary layer clouds at the heart of tropical cloud feedback uncertainties in climate models. Geophysical Research Letters, vol 32 (20), doi: 10.1029/2005GL023851

Borchert L., M.B. Menary, D. Swingedouw, G. Sgubin, and J. Mignot (2020) Forcing contributes to decadal prediction skill of North Atlantic subpolar gyre SST in CMIP6. Geophysical Research Letters, in press, 2020.

Boucher, O., J. Servonnat, A. L. Albright, O. Aumont, Y. Balkanski, V. Bastrikov, S. Bekki, R. Bonnet, S. Bony, L. Bopp, P. Braconnot, P. Brockmann, P. Cadule, A. Caubel, F. Cheruy, F. Codron, A. Cozic, D. Cugnet, F. D’Andrea, P. Davini, C. de Lavergne, S. Denvil, J. Deshayes, M. Devilliers, A. Ducharne, J.-L. Dufresne, E. Dupont, C. Ethé, L. Fairhead, L. Falletti, S. Flavoni, M.-A. Foujols, S. Gardoll, G. Gastineau, J. Ghattas, J.-Y. Grandpeix, B. Guenet, L. Guez, E. Guilyardi, M. Guimberteau, D. Hauglustaine, F. Hourdin, A. Idelkadi, S. Joussaume, M. Kageyama, A. Khadre-Traoré, M. Khodri, G. Krinner, N. Lebas, G. Levavasseur, C. Lévy, L. Li, F. Lott, T. Lurton, S. Luyssaert, G. Madec, J.-B. Madeleine, F. Maignan, M. Marchand, O. Marti, L. Mellul, Y. Meurdesoif, J. Mignot, I. Musat, C. Ottlé, P. Peylin, Y. Planton, J. Polcher, C. Rio, N. Rochetin, C. Rousset, P. Sepulchre, A. Sima, D. Swingedouw, R. Thieblemont, A. Traoré, M. Vancoppenolle, J. Vial, J. Vialard, N. Viovy, and N. Vuichard (2020) Presentation and evaluation of the IPSL-CM6A-LR climate model, Journal of Advances in Modeling Earth System, 12, e2019MS002010, doi:10.1029/2019MS002010.

Bougeault, P., and Lacarrère, P. (1989) Parameterization of orography‐induced turbulence in a mesobeta‐scale model. Monthly Weather Review, 117(8), 1872–1890. doi : 10.1175/1520-0493(1989)117<1872:POOITI>2.0.CO;2

Boysen, L., V. Brovkin, J. Pongratz, D. Lawrence, P. Lawrence, N. Vuichard, P. Peylin, S. Liddicoat, T. Hajima, Y. Zhang, M. Rocher, C. Delire, R. Séférian, V.K. Arora, L. Nieradzik, P. Anthoni, W. Thiery, M. Laguë, D. Lawrence, and M.-H. Lo (2020) Global climate response to idealized deforestation in CMIP6 models, Biogeosciences, 17, 5615–5638, 2020. doi: 10.5194/bg-17-5615-2020.

Bracegirdle, T., G. Krinner, M. Tonelli, F. Haumann, K. Naughten, T. Rackow, L.A. Roach, and I. Wainer (2020)Twenty first century changes in Antarctic and Southern Ocean surface climate in CMIP6. Atmospheric Science Letters, e984, 2020. doi: 10.1002/asl.984

Braconnot, P., S. Albani, Y. Balkanski, A. Cozic, M. Kageyama, A. Sima, O. Marti, and J.-Y. Peterschmitt (2020) Impact of dust in PMIP-CMIP6 mid-Holocene simulations with the IPSL model, Climate of the Past, in review, 2020. doi:10.5194/cp-2020-144.

Brierley, C. M., A. Zhao, S.P. Harrison, P. Braconnot, C.J.R. Williams, D.J.R. Thornalley, X. Shi, J.-Y. Peterschmitt, R. Ohgaito, D.S. Kaufman, M. Kageyama, J.C. Hargreaves, M.P. Erb, J. Emile-Geay, R. D’Agostino, D. Chandan, M. Carré, P. Bartlein, W. Zheng, Z. Zhang, Q. Zhang, H. Yang, E.M. Volodin, R.A. Tomas, C. Routson, W.R. Peltier, B. Otto-Bliesner, P.A. Morozova, N.P. McKay, G. Lohmann, A.N. Legrande, C. Guo, J. Cao, E. Brady, J.D. Annan, and A. Abe-Ouchi (2020)Large-scale features and evaluation of the PMIP4-CMIP6 midHolocene simulations, Climate of the Past, 16, 1847–1872, 2020. doi: 10.5194/cp-16-1847-2020.

Brown, J. R., Brierley, C. M., An, S.-I., Guarino, M.-V., Stevenson, S., Williams, C. J. R., Zhang, Q., Zhao, A., Abe-Ouchi, A., Braconnot, P., Brady, E. C., Chandan, D., D’Agostino, R., Guo, C., LeGrande, A. N., Lohmann, G., Morozova, P. A., Ohgaito, R., O’ishi, R., Otto-Bliesner, B. L., Peltier, W. R., Shi, X., Sime, L., Volodin, E. M., Zhang, Z., and Zheng, W. (2020) Comparison of past and future simulations of ENSO in CMIP5/PMIP3 and CMIP6/PMIP4 models, Climate of the Past, 16, 1777–1805, 2020. doi:10.5194/cp-16-1777-2020.

Burke, E. J., Y. Zhang, and G. Krinner, Evaluating permafrost physics in the CMIP6 models and their sensitivity to climate change (2020) The Cryosphere, 14, 3155–3174, 2020. doi: 10.5194/tc-14-3155-2020.

Ceppi, P., D. Hartmann and M. Webb  (2016) Mechanisms of the negative shortwave cloud feedback in middle to high latitudes. J. Climate, vol 29 (1) : 139-157, doi: 10.1175/JCLI-D-15-0327.1

Cheruy, F., A. Ducharne, F. Hourdin, I. Musat, E. Vignon, G. Gastineau, V. Bastrikov, N. Vuichard, B. Diallo, J.-L. Dufresne, J. Ghattas, J.-Y. Grandpeix, A. Idelkadi, L. Mellul, F. Maignan, M. Menegoz, C. Ottlé, P. Peylin, F. Wang, and Y. Zhao (2020) Improved near surface continental climate in IPSL-CM6 by combined evolutions of atmospheric and land surface physics, Journal of Advances in Modeling Earth System, 12, e2019MS002005. doi:10.1029/2019MS002005.

Clyne M., J.-F. Lamarque, M. J. Mills, M. Khodri, W. Ball, S. Bekki, S.S. Dhomse, N. Lebas, G. Mann, L. Marshall, U. Niemeier, V. Poulain, A. Robock, E. Rozanov, A. Schmidt, A. Stenke, T. Sukhodolov, C. Timmreck, M. Toohey, F. Tummon, D. Zanchettin, Y. Zhu and O. B. Toon (2020) Model physics and chemistry causing intermodel disagreement within the VolMIP-Tambora Interactive Stratospheric Aerosol ensemble, Atmospheric Chemistry and Physics, in review, 2020. doi: 10.5194/acp-2020-883.

Davini, P., and F. D’Andrea (2020) From CMIP-3 to CMIP-6 (2020) Northern Hemisphere atmospheric blocking simulation in present and future climate. Journal of Climate, 1–50, 2020. doi: 10.1175/JCLI-D-19-0862.1.

de Nooijer, W., Zhang, Q., Li, Q., Zhang, Q., Li, X., Zhang, Z., Guo, C., Nisancioglu, K. H., Haywood, A. M., Tindall, J. C., Hunter, S. J., Dowsett, H. J., Stepanek, C., Lohmann, G., Otto-Bliesner, B. L., Feng, R., Sohl, L. E., Tan, N., Contoux, C., Ramstein, G., Baatsen, M. L. J., von der Heydt, A. S., Chandan, D., Peltier, W. R., Abe-Ouchi, A., Chan, W.-L., Kamae, Y., and Brierley, C. M. (2020) Evaluation of Arctic warming in mid-Pliocene climate simulations, Climate of the Past, 16, 2325–2341, 2020. doi: 10.5194/cp-16-2325-2020.

Devilliers, M., D. Swingedouw, J. Mignot, J. Deshayes, G. Garric, and M. Ayache (2020) A realistic Greenland and surroundings melting in a coupled climate model. Climate Dynamics, in revision, 2020.

Dohmse, S.S, D. Kinnison, M. Chipperfield, R. Salawitch, I. Cionni, M. Hegglin, N. Abraham, H. Akiyoshi, A. Archibald, E. Bednarz, S. Bekki, P. Braesicke, N. Butchart, M. Dameris, M. Deushi, S. Frith, S. Hardiman, B. Hassler, L. Horowitz, R.-M. Hu, P. Jöckel, B. Josse, O. Kirner, S. Kremser, U. Langematz, J. Lewis, M. Marchand, M. Lin, E. Mancini, V. Maréchal, M. Michou, O. Morgenstern, F. O'Connor, L. Oman, G. Pitari, D. Plummer, J. Pyle, L. Revell, E. Rozanov, R. Schofield, A. Stenke, K. Stone, K. Sudo, S. Tilmes, D. Visioni, Y. Yamashita and G. Zeng. (2018) Estimates of ozone return dates from Chemistry-Climate Model Initiative simulations. Atmos. Chem. Phys., 18, 8409–8438, 2018. doi: 10.5194/acp-18-8409-2018

Dong, Y., C. Proistosescu, K. Armour and D. Battisti (2019) Attributing historical and future evolution of radiative feedbacks to regional warming patterns using a green’s function approach: The preeminence of the Western Pacific. J. Climate vol 32 (17) : 5471-5491. doi: 10.1175/JCLI-D-18-0843.1

Eyring, V., S. Bony, G. A. Meehl, C. Senior, B. Stevens, R. J. Stouffer, and K. E. Taylor (2016) Overview of the Coupled Model Intercomparison Project Phase 6 (CMIP6): Experimental design and organisation. Geoscientific Model Development, 9, 1937–1958, 2016. doi:10.5194/gmd-9-1937-2016

 

Flack, S., G. Riviere, I. Musat, R. Roehrig, S. Bony, J. Delanoë, Q. Cazenave and J. Pelon (2020) How well do models represent the development of extra-tropical cyclones? Evaluation of two general circulation models against NAWDEX IOP 6 observations, Weather and Climate Dynamics, submitted, 2020.

Gastineau, G., F. Lott, J. Mignot, and F. Hourdin (2020) Alleviation of an Arctic sea ice bias in a coupled model through modifications in the subgrid-scale orographic parameterization, Journal of Advances in Modeling Earth System, 12, e2020MS002111. doi:10.1029/2020MS002111.

Gillett, N., M. Kirchmeier-Young, A. Ribes, H. Shiogama, G. Hegerl, R. Knutti, G. Gastineau, J. John, L. Li, N. Rosenbloom, O. Seland, T. Wu, and S. Yukimoto (2021) Constraining human contributions to observed warming since preindustrial, Nature Climate Change, 2021. doi:10.1038/s41558-020-00965-9.

Goelzer, H., S. Nowicki, A. Payne, E. Larour, H. Seroussi, W. Lipscomb, J. Gregory, A. Abe-Ouchi, A. Shepherd, E. Simon, C. Agosta, P. Alexander, A. Aschwanden, A. Barthel, R. Calov, C. Chambers, Y. Choi, J. Cuzzone, C. Dumas, T. Edwards, D. Felikson, X. Fettweis, N. Golledge, R. Greve, A. Humbert, P. Huybrechts, S. Le Clec'h, V. Lee, G. Leguy, C. Little, D. Lowry, M. Morlighem, I. Nias, A. Quiquet, M. Rückamp, N.-J. Schlegel, D. Slater, R. Smith, F. Straneo, L. Tarasov, R. van de Wal and M. van den Broeke (2020) The future sea-level contribution of the Greenland ice sheet: a multimodel ensemble study of ISMIP6. The Cryosphere, 14, 3071–3096, 2020, doi: 10.5194/tc-14-3071-2020

Gregory, J. M., W. J. Ingram, M. A. Palmer, G. S. Jones, P. A. Stott, R. B. Thorpe, J.A. Lowe, T. C. Johns and K. D. Williams (2004) A new method for diagnosing radiative forcing and climate sensitivity. Geophysical Research Letters, vol 31 (3), doi: 10.1029/2003GL018747

Guérémy, J. F. (2011) A continuous buoyancy based convection scheme: One‐ and three‐dimensional validation. Tellus Series A: Dynamic Meteorology and Oceanography, 63(4), 687–706. doi: 10.1111/j.1600-0870.2011.00521.x

Haywood, A. M., J.C. Tindall, H.J. Dowsett, A.M. Dolan, K.M. Foley, S.J. Hunter, D.J. Hill, W.-L. Chan, A. Abe-Ouchi, C. Stepanek, G. Lohmann, D. Chandan, W.R. Peltier, N. Tan, C. Contoux, G. Ramstein, X. Li, Z. Zhang, C. Guo, K.H. Nisancioglu, Q. Zhang, Q. Li, Y. Kamae, M.A. Chandler, L.E. Sohl, B.L. Otto-Bliesner, R. Feng, E.C. Brady, A.S. von der Heydt, M.L.J. Baatsen, and D.J. Lunt (2020) A return to large-scale features of Pliocene climate: the Pliocene Model Intercomparison Project Phase 2, Climate of the Past, 16, 2095–2123, 2020. doi:10.5194/cp-16-2095-2020.

Hourdin, F., A. Jam, C. Rio, F. Couvreux, I. Sandu, M.-P. Lefebvre, F. Brient, and A. Idelkadi (2020) Unified parameterization of convective boundary layer transport and clouds with the thermal plume model. Journal of Advances in Modeling Earth Systems, 11, 2910–2933, doi:10.1029/2019MS001666.

Hourdin, F., C. Rio, J.-Y. Grandpeix, J.-B. Madeleine, F. Chéruy, N. Rochetin, I. Musat, A. Idelkadi, L. Fairhead, M.-A. Foujols, L. Mellul, A.-K. Traore, J.-L. Dufresne, O. Boucher, M.-P. Lefebvre, E. Millour, E. Vignon, J. Jouaud, F. B. Diallo, F. Lott, A. Caubel, Y. Meurdesoif, and J. Ghattas (2020) LMDZ-6A: the improved atmospheric component of the IPSL coupled model, Journal of Advances in Modeling Earth System, 12, e2019MS001892, doi:10.1029/2019MS001892.

Hourdin, F., C. Rio, A. Jam, A.-K. Traore, and I. Musat (2020) Convective boundary layer control of the sea surface temperature in the tropics. Journal of Advances in Modeling Earth Systems, 12, e2019MS001988, doi:10.1029/2019MS001988.

Ito, A., T. Hajima, D. Lawrence, V. Arora, V. Brovkin, B. Guenet, C. Jones, S. McDermid, D. Peano, J. Pongratz, R. Robertson, N. Vuichard, D. Wårlind, A. Wiltshire (2020) Soil carbon sequestration simulated in the CMIP6-LUMIP models: implications for the 4 per 1000 Initiative, Environmental Research Letters, 15, 124061, 2020. doi:10.1088/1748-9326/abc912

Jansen, E., et al. (2007) Palaeoclimate, in: Climate change 2007: The physical science basis. Contribution of working group I to the fourth assessment report of the intergovernmental panel on climate change, edited by: Solomon, S., Qin, D., Manning, M., Chen, Z., Marquis, M., Averyt, K., Tignor, M., and Miller, H., Cambridge University Press, Cambridge, 2007.

Jiang, W., G. Gastineau, and F. Codron, Multi-centennial variability driven by salinity exchanges between the Atlantic and the Arctic Ocean in a coupled climate model, Journal of Advances in Modeling Earth System, submitted, 2020.

Jones, C. D., V. Arora, P. Friedlingstein, L. Bopp, V. Brovkin, J. Dunne, H. Graven, F. Hoffman, T. Ilyina, J. John, M. Jung, M. Kawamiya, C. Koven, J. Pongratz, T. Raddatz, J. Randerson, S. Zaehle (2016) C4MIP – The Coupled Climate–Carbon Cycle Model Intercomparison Project: experimental protocol for CMIP6. Geoscientific Model Development, 9, 2853-2880. doi: 10.5194/gmd-9-2853-2016.

Jourdain, N. W. Asay-Davis, T. Hattermann, F. Straneo, H. Seroussi, C. Little and S. Nowicki (2020) A protocol for calculating basal melt rates in the ISMIP6 Antarctic ice sheet projections.  The Cryosphere, 14, 3111–3134,  doi: 10.5194/tc-14-3111-2020

Jungclaus, J. H,  E. Bard, M. Baroni, P. Braconnot, J. Cao, L. P. Chini, T. Egorova, M. Evans, J. F. González-Rouco, H. Goosse, G. C. Hurtt, F. Joos, J. O. Kaplan, M. Khodri, K. Klein Goldewijk, N. Krivova, A. N. LeGrande, S. J. Lorenz, J. Luterbacher, W. Man, A. C. Maycock, M., A. Moberg, R. Muscheler, C. Nehrbass-Ahles, B. I. Otto-Bliesner, S. J. Phipps, J. Pongratz, E. Rozanov, G. A. Schmidt, H. Schmidt, W. Schmutz, A. Schurer, A. I. Shapiro, M. Sigl, J. E. Smerdon, S. K. Solanki, C. Timmreck, M. Toohey, I. G. Usoskin, S. Wagner, C.-J. Wu, K. Leng Yeo, D. Zanchettin, Q. Zhang, and E. Zorita (2017) The PMIP4 contribution to CMIP6 – Part 3: The last millennium, scientific objective, and experimental design for the PMIP4 simulations, Geoscientific Model Development, 10, 4005-4033, 2017. doi: 10.5194/gmd-10-4005-2017

Kageyama, M., Sime, L. C., Sicard, M., Guarino, M.-V., de Vernal, A., Schroeder, D., Stein, R., Malmierca-Vallet, I., Abe-Ouchi, A., Bitz, C., Braconnot, P., Brady, E., Chamberlain, M. A., Feltham, D., Guo, C., Lohmann, G., Meissner, K., Menviel, L., Morozova, P., Nisancioglu, K. H., Otto-Bliesner, B., O’ishi, R., Sherriff-Tadano, S., Stroeve, J., Shi, X., Sun, B., Volodin, E., Yeung, N., Zhang, Q., Zhang, Z., and Ziehn, T. (2021) A multi-model CMIP6 study of Arctic sea ice at 127 ka: Sea ice data compilation and model differences, Climate of the Past, 17, 37-62, 2021. doi: 10.5194/cp-17-37-2021

Kageyama, M., Harrison, S. P., Kapsch, M.-L., Löfverström, M., Lora, J. M., Mikolajewicz, U., Sherriff-Tadano, S., Vadsaria, T., Abe-Ouchi, A., Bouttes, N., Chandan, D., LeGrande, A. N., Lhardy, F., Lohmann, G., Morozova, P. A., Ohgaito, R., Peltier, W. R., Quiquet, A., Roche, D. M., Shi, X., Schmittner, A., Tierney, J. E., and Volodin, E. (2020) The PMIP4-CMIP6 Last Glacial Maximum experiments: preliminary results and comparison with the PMIP3-CMIP5 simulations, Climate of the Past, in press, 2021. doi: 10.5194/cp-2019-169

Kageyama, M., P. Braconnot, S. Harrison, A. Haywood, J. Jungclaus, B. Otto-Bliesner, J.-Y. Peterschmitt, A. Abe-Ouchi, S. Albani, P. Bartlein, C. Brierley, M. Crucifix, , A. Dolan, L. Fernandez-Donado, H. Fischer, P. Hopcroft, R. Ivanovic, F. Lambert, D. Lunt, N. Mahowald, W. R. Peltier, S. Phipps, D. Roche, G. Schmidt, L. Tarasov, P. Valdes, Q. Zhang, and T. Zhou (2018) The PMIP4 contribution to CMIP6 – Part 1: Overview and over-arching analysis plan, Geosci. Model Dev., 11, 1033-1057, 2018. doi: 10.5194/gmd-11-1033-2018

Keeble J., B. Hassler, A. Banerjee, R. Checa-Garcia, G. Chiodo, S. Davis, V. Eyring, P. T. Griffiths, O. Morgenstern, P. Nowack, G. Zeng, J. Zhang, G. Bodeker, D. Cugnet, G. Danabasoglu, M. Deushi, L. W. Horowitz, L. Li, M. Michou, M. J. Mills, P. Nabat, S. Park, and T. Wu (2020) Evaluating stratospheric ozone and water vapour changes in CMIP6 models from 1850-2100, Atmos. Chem. Phys. Discuss., in review, doi: 10.5194/acp-2019-1202.

Keen, A., E. Blockley, D. Bailey, J. Boldingh Debernard, M. Bushuk, S. Delhaye, D. Docquier, D. Feltham, F. Massonnet, S. O’Farrell, L. Ponsoni, J.M. Rodriguez, D. Schroeder, N. Swart, T. Toyoda, H. Tsujino, M. Vancoppenolle, and K. Wyser (2021) An inter-comparison of the mass budget of the Arctic sea ice in CMIP6 models, The Cryosphere, in press, 2021. doi:10.5194/tc-2019-314

Khodri M. et al. Climate variability and change over the last 2000 years as simulated by the IPSL-CM5 and CM6 models. En préparation.

Khodri, M., M. Khodri, T. Izumo, J. Vialard, S. Janicot, C. Cassou, M. Lengaigne, J. Mignot, G. Gastineau, E. Guilyardi, N. Lebas, A. Robock and J. McPhaden (2017) Tropical explosive volcanic eruptions can trigger El Niño by cooling tropical Africa. Nature communications, 8(1), 778 (2017)

Kravitz, B., D.G. MacMartin, D. Visioni, O. Boucher, J.N.S. Cole, J. Haywood, A. Jones, T. Lurton, P. Nabat, U. Niemeier, A. Robock, R. Séférian, and S. Tilmes (2020) Comparing different generations of idealized solar geoengineering simulations in the Geoengineering Model Intercomparison Project (GeoMIP), Atmospheric Chemistry and Physics, in review, 2020.

Kwiatkowski, L., O. Torres, L. Bopp, O. Aumont, M. Chamberlain, J.R. Christian, J.P. Dunne, M. Gehlen, T. Ilyina, J.G. John, A. Lenton, H. Li, N. S. Lovenduski, J. C. Orr, J. Palmieri, Y. Santana-Falcón, J. Schwinger, R. Séférian, C. A. Stock, A. Tagliabue, Y. Takano, J. Tjiputra, K. Toyama, H. Tsujino, M. Watanabe, A. Yamamoto, A. Yool, and T. Ziehn (2020) Twenty-first century ocean warming, acidification, deoxygenation, and upper-ocean nutrient and primary production decline from CMIP6 model projections. Biogeosciences, 17, 3439–3470, 2020. doi: 10.5194/bg-17-3439-2020.

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