Preprints

  1. Sablon, L., Maffre, P., Goddéris, Y., Valdes, P. J., Gérard, J., Huygh, J. J. C., Da Silva, A., & Crucifix, M. (2025). An Emulator-Based Modelling Framework for Studying Astronomical Controls on Ocean Anoxia with an Application on the Devonian. doi:10.5194/egusphere-2025-1696

Published

  1. Huygh, J. J., Algeo, T. J., Sageman, B. B., Arts, M., Ver Straeten, C. A., Over, D. J., Gérard, J., Sablon, L., Crucifix, M., & Da Silva, A. (2026). Astronomical control on marine anoxia during the Kellwasser Crisis and Rhinestreet Event (Appalachian Basin, New York, USA). Global and Planetary Change, 257, 105216. doi:10.1016/j.gloplacha.2025.105216 handle:10.1016/j.gloplacha.2025.105216
  2. Mitsui, T., Ditlevsen, P., Boers, N., & Crucifix, M. (2025). 100 kyr ice age cycles as a timescale-matching problem. Earth System Dynamics, 16(5), 1569–1584. doi:10.5194/esd-16-1569-2025
  3. Gérard, J., Sablon, L., Huygh, J. J. C., Da Silva, A., Pohl, A., Vérard, C., & Crucifix, M. (2025). Exploring the mechanisms of Devonian oceanic anoxia: impact of ocean dynamics, palaeogeography, and orbital forcing. Climate of the Past, 21(1), 239–260. doi:10.5194/cp-21-239-2025
  4. Karyu, H., Kuroda, T., Mahieux, A., Viscardy, S., Määttänen, A., Terada, N., Robert, S., Vandaele, A. C., & Crucifix, M. (2025). A Microphysics Model of Multicomponent Venus’ Clouds With a High‐Accuracy Condensation Scheme. Earth and Space Science, 12(6). doi:10.1029/2025ea004203
  5. Vanderveken, L., & Crucifix, M. (2025). Rate-induced transitions and noise-driven resilience in vegetation pattern dynamics. Nonlinear Processes in Geophysics, 32(2), 189–200. doi:10.5194/npg-32-189-2025
  6. Hamilton, O., Demaeyer, J., Crucifix, M., & Vannitsem, S. (2025). Using unstable periodic orbits to understand blocking behavior in a low order landÔÇôatmosphere model. Chaos: An Interdisciplinary Journal of Nonlinear Science, 35(8), 083126. doi:10.1063/5.0268852
  7. Couplet, V., Martínez Montero, M., & Crucifix, M. (2025). SURFER v3.0: a fast model with ice sheet tipping points and carbon cycle feedbacks for short- and long-term climate scenarios. Geoscientific Model Development, 18(10), 3081–3129. doi:10.5194/gmd-18-3081-2025
  8. Gérard, J., & Crucifix, M. (2024). Diagnosing the causes of AMOC slowdown in a coupled model: a cautionary tale. Earth System Dynamics, 15(2), 293–306. doi:10.5194/esd-15-293-2024
  9. Martínez Montero, M., Brede, N., Couplet, V., Crucifix, M., Botta, N., & Wieners, C. (2024). Lost options commitment: how short-term policies affect long-term scope of action. Oxford Open Climate Change, 4(1). doi:10.1093/oxfclm/kgae004
  10. Ben‐Yami, M., Good, P., Jackson, L. C., Crucifix, M., Hu, A., Saenko, O., Swingedouw, D., & Boers, N. (2024). Impacts of AMOC Collapse on Monsoon Rainfall: A Multi‐Model Comparison. Earth’s Future, 12(9). doi:10.1029/2023ef003959
  11. Vanderveken, L., Martínez Montero, M., & Crucifix, M. (2023). Existence and influence of mixed states in a model of vegetation patterns. Nonlinear Processes in Geophysics, 30(4), 585–599. doi:10.5194/npg-30-585-2023
  12. Hamilton, O., Demaeyer, J., Vannitsem, S., & Crucifix, M. (2023). Multistability in a coupled ocean–atmosphere reduced‐order model: Nonlinear temperature equations. Quarterly Journal of the Royal Meteorological Society, 149(757), 3423–3439. doi:10.1002/qj.4564
  13. Verbitsky, M. Y., & Crucifix, M. (2023). Do phenomenological dynamical paleoclimate models have physical similarity with Nature? Seemingly, not all of them do. Climate of the Past, 19(9), 1793–1803. doi:10.5194/cp-19-1793-2023
  14. Wood, R. A., Crucifix, M., Lenton, T. M., Mach, K. J., Moore, C., New, M., Sharpe, S., Stocker, T. F., & Sutton, R. T. (2023). A Climate Science Toolkit for High Impact‐Low Likelihood Climate Risks. Earth’s Future, 11(4). doi:10.1029/2022ef003369
  15. Van Breedam, J., Huybrechts, P., & Crucifix, M. (2023). Hysteresis and orbital pacing of the early Cenozoic Antarctic ice sheet. Climate of the Past, 19(12), 2551–2568. doi:10.5194/cp-19-2551-2023
  16. Botta, N., Brede, N., Crucifix, M., Ionescu, C., Jansson, P., Li, Z., Martínez, M., & Richter, T. (2023). Responsibility Under Uncertainty: Which Climate Decisions Matter Most? Environmental Modeling &Amp; Assessment, 28(3), 337–365. doi:10.1007/s10666-022-09867-w
  17. Wouters, S., Crucifix, M., Sinnesael, M., Da Silva, A., Zeeden, C., Zivanovic, M., Boulvain, F., & Devleeschouwer, X. (2022). A decomposition approach to cyclostratigraphic signal processing. Earth-Science Reviews, 225, 103894. doi:10.1016/j.earscirev.2021.103894
  18. Martínez Montero, M., Crucifix, M., Couplet, V., Brede, N., & Botta, N. (2022). SURFER v2.0: a flexible and simple model linking anthropogenic CO2 emissions and solar radiation modification to ocean acidification and sea level rise. Geoscientific Model Development, 15(21), 8059–8084. doi:10.5194/gmd-15-8059-2022
  19. Van Breedam, J., Huybrechts, P., & Crucifix, M. (2022). Modelling evidence for late Eocene Antarctic glaciations. Earth and Planetary Science Letters, 586, 117532. doi:10.1016/j.epsl.2022.117532
  20. von der Heydt, A. S., Ashwin, P., Camp, C. D., Crucifix, M., Dijkstra, H. A., Ditlevsen, P., & Lenton, T. M. (2021). Quantification and interpretation of the climate variability record. Global and Planetary Change, 197, 103399. doi:10.1016/j.gloplacha.2020.103399
  21. Lenton, T. M., Kohler, T. A., Marquet, P. A., Boyle, R. A., Crucifix, M., Wilkinson, D. M., & Scheffer, M. (2021). Survival of the Systems. Trends in Ecology & Evolution. doi:10.1016/j.tree.2020.12.003
  22. Verbitsky, M. Y., & Crucifix, M. (2021). ESD Ideas: The Peclet number is a cornerstone of the orbital and millennial Pleistocene variability. Earth System Dynamics, 12(1), 63–67. doi:10.5194/esd-12-63-2021
  23. Lyu, A. Q., Yin, Q. Z., Crucifix, M., & Sun, Y. B. (2021). Diverse Regional Sensitivity of Summer Precipitation in East Asia to Ice Volume, CO 2 and Astronomical Forcing. Geophysical Research Letters, 48(7). doi:10.1029/2020gl092005
  24. Brovkin, V., Brook, E., Williams, J. W., Bathiany, S., Lenton, T. M., Barton, M., DeConto, R. M., Donges, J. F., Ganopolski, A., McManus, J., Praetorius, S., de Vernal, A., Abe-Ouchi, A., Cheng, H., Claussen, M., Crucifix, M., Gallopín, G., Iglesias, V., Kaufman, D. S., … Yu, Z. (2021). Past abrupt changes, tipping points and cascading impacts in the Earth system. Nature Geoscience, 14(8), 550–558. doi:10.1038/s41561-021-00790-5
  25. von der Heydt, A. S., Ashwin, P., Camp, C. D., Crucifix, M., Dijkstra, H. A., Ditlevsen, P., & Lenton, T. M. (2021). Quantification and interpretation of the climate variability record. Global and Planetary Change, 197, 103399. doi:10.1016/j.gloplacha.2020.103399
  26. Jebeile, J., & Crucifix, M. (2021). Value management and model pluralism in climate science. Studies in History and Philosophy of Science, 88, 120–127. doi:10.1016/j.shpsa.2021.06.004
  27. Van Breedam, J., Huybrechts, P., & Crucifix, M. (2021). A Gaussian process emulator for simulating ice sheet - climate interactions on a multi-million-year timescale: CLISEMv1.0. Geoscientific Model Development, 14(10), 6373–6401. doi:10.5194/gmd-14-6373-2021
  28. Verbitsky, M. Y., & Crucifix, M. (2020). Pi-theorem generalization of the ice-age theory. Earth System Dynamics, 11(1), 281–289. doi:10.5194/esd-11-281-2020
  29. Alexandrov, D. V., Bashkirtseva, I. A., Ryashko, L. B., & Crucifix, M. (2020). Nonlinear climate dynamics: From deterministic behavior to stochastic excitability and chaos. Physics Reports. doi:10.1016/j.physrep.2020.11.002
  30. Jebeile, J., & Crucifix, M. (2020). Multi-model ensembles in climate science: Mathematical structures and expert judgements. Studies in History and Philosophy of Science Part A, 83, 44–52. doi:10.1016/j.shpsa.2020.03.001
  31. Carson, J., Crucifix, M., Preston, S. P., & Wilkinson, R. D. (2019). Quantifying age and model uncertainties in palaeoclimate data and dynamical climate models with a joint inferential analysis. Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences, 475(2224), 20180854. doi:10.1098/rspa.2018.0854
  32. Verbitsky, M. Y., Crucifix, M., & Volobuev, D. M. (2019). ESD Ideas: Propagation of high-frequency forcing to ice age dynamics. Earth System Dynamics, 10(2), 257–260. doi:10.5194/esd-10-257-2019
  33. Sun, Y., Yin, Q., Crucifix, M., Clemens, S. C., Araya-Melo, P., Liu, W., Qiang, X., Liu, Q., Zhao, H., Liang, L., Chen, H., Li, Y., Zhang, L., Dong, G., Li, M., Zhou, W., Berger, A., & An, Z. (2019). Diverse manifestations of the mid-Pleistocene climate transition. Nature Communications, 10(1). doi:10.1038/s41467-018-08257-9
  34. Carson, J., Crucifix, M., Preston, S., & Wilkinson, R. D. (2018). Bayesian model selection for the glacial-interglacial cycle. Journal of the Royal Statistical Society: Series C (Applied Statistics), 67, 25–54. doi:10.1111/rssc.12222
  35. Mitsui, T., Lenoir, G., & Crucifix, M. (2018). Why glacial climates look multifractal. Dynamics and Statistics of the Climate System, in press, 0.
  36. Lenoir, G., & Crucifix, M. (2018). A general theory on frequency and time–frequency analysis of irregularly sampled time series based on projection methods – Part 1: Frequency analysis. Nonlinear Processes in Geophysics, 25(1), 145–173. doi:10.5194/npg-25-145-2018
  37. Lenoir, G., & Crucifix, M. (2018). A general theory on frequency and time–frequency analysis of irregularly sampled time series based on projection methods – Part 2: Extension to time–frequency analysis. Nonlinear Processes in Geophysics, 25(1), 175–200. doi:10.5194/npg-25-175-2018
  38. Steffen, W., Rockström, J., Richardson, K., Lenton, T. M., Folke, C., Liverman, D., Summerhayes, C. P., Barnosky, A. D., Cornell, S. E., Crucifix, M., Donger, J. F., Fetzer, I., Lade, S. J., Scheffer, M., Winkelmann, R., & Schellnhuber, H. J. (2018). Trajectories of the Earth System in the Anthropocene. Proceedings of the National Academy of Sciences, 201810141. doi:10.1073/pnas.1810141115
  39. Verbitsky, M. Y., Crucifix, M., & Volobuev, D. M. (2018). A theory of Pleistocene glacial rhythmicity. Earth System Dynamics, 9(3), 1025–1043. doi:10.5194/esd-9-1025-2018
  40. Rougier, J., & Crucifix, M. (2018). Uncertainty in Climate Science and Climate Policy. Climate Modelling, 361–380. doi:10.1007/978-3-319-65058-6_12
  41. Mitsui, T., Lenoir, G., & Crucifix, M. (2018). Is the glacial climate scale invariant? Dynamics and Statistics of the Climate System, 3(1). doi:10.1093/climsys/dzy011
  42. Tzedakis, P. C., Crucifix, M., Mitsui, T., & Wolff, E. W. (2017). A simple rule to determine which insolation cycles lead to interglacials. Nature, 542, 427–432. doi:10.1038/nature21364
  43. De Vleeschouwer, D., Vahlenkamp, M., Crucifix, M., & Pälike, H. (2017). Alternating Southern and Northern Hemisphere climate response to astronomical forcing during the past 35 m.y. Geology, 45(4), 375–378. doi:10.1130/g38663.1
  44. Mitsui, T., & Crucifix, M. (2017). Influence of external forcings on abrupt millennial-scale climate changes: a statistical modelling study. Climate Dynamics, 48(7-8), 2729–2749. doi:10.1007/s00382-016-3235-z
  45. Valdes, P. J., Armstrong, E., Badger, M. P. S., Bradshaw, C. D., Bragg, F., Crucifix, M., Davies-Barnard, T., Day, J. J., Farnsworth, A., Gordon, C., & et al. (2017). The BRIDGE HadCM3 family of climate models: HadCM3@Bristol v1.0. Geoscientific Model Development, 10(10), 3715–3743. doi:10.5194/gmd-10-3715-2017
  46. Lord, N. S., Crucifix, M., Lunt, D. J., Thorne, M. C., Bounceur, N., Dowsett, H., O’Brien, C. L., & Ridgwell, A. (2017). Emulation of long-term changes in global climate: application to the late Pliocene and future. Climate of the Past, 13(11), 1539–1571. doi:10.5194/cp-13-1539-2017
  47. von der Heydt, A. S., Dijkstra, H. A., van de Wal, R. S. W., Caballero, R., Crucifix, M., Foster, G. L., Huber, M., Köhler, P., Rohling, E., Valdes, P. J., Ashwin, P., Bathiany, S., Berends, T., van Bree, L. G. J., Ditlevsen, P., Ghil, M., Haywood, A., Katzav, J., Lohmann, G., … Ziegler, M. (2016). Lessons on Climate Sensitivity From Past Climate Changes. Current Climate Change Reports. doi:10.1007/s40641-016-0049-3
  48. Bathiany, S., Dijkstra, H., Crucifix, M., Dakos, V., Brovkin, V., Williamson, M., Lenton, T., & Scheffer, M. (2016). Beyond bifurcation – using complex models to understand and predict abrupt climate change. Dynamics and Statistics of the Climate System, 1. doi:10.1093/climsys/dzw004
  49. Mitsui, T., & Crucifix, M. (2016). Influence of external forcings on abrupt millennial-scale climate changes: a statistical modelling study. Climate Dynamics, 48(7–8), 2729–2749. doi:10.1007/s00382-016-3235-z
  50. Berger, A., Crucifix, M., Hodell, D. A., Mangili, C., McManus, J. F., Otto-Bliesner, B., Pol, K., Raynaud, D., Skinner, L. C., Tzedakis, P. C., Wolff, E. W., Yin, Q. Z., Abe-Ouchi, A., Barbante, C., Brovkin, V., Cacho, I., Capron, E., Ferretti, P., Ganopolski, A., … Vazquez Riveiros, N. (2015). Reviews of Geophysics.
  51. Carson, J., Crucifix, M., Preston, S., & Wilkinson, R. D. (2015). Bayesian model selection for the glacial-interglacial cycle. ArXiv e-Prints.
  52. Regoli, F., de Garidel-Thoron, T., Tachikawa, K., Jian, Z., Ye, L., Droxler, A. W., Lenoir, G., Crucifix, M., Barbarin, N., & Beaufort, L. (2015). Progressive shoaling of the equatorial Pacific thermocline over the last eight glacial periods. Paleoceanography, 30(5), 439–455. doi:10.1002/2014pa002696
  53. Mitsui, T., Crucifix, M., & Aihara, K. (2015). Bifurcations and strange nonchaotic attractors in a phase oscillator model of glacial–interglacial cycles. Physica D: Nonlinear Phenomena, 306, 25–33. doi:10.1016/j.physd.2015.05.007
  54. Bounceur, N., Crucifix, M., & Wilkinson, R. D. (2015). Global sensitivity analysis of the climate-vegetation system to astronomical forcing: an emulator-based approach. Earth System Dynamics, 6(1), 205–224. doi:10.5194/esd-6-205-2015
  55. Araya-Melo, P. A., Crucifix, M., & Bounceur, N. (2015). Global sensitivity analysis of the Indian monsoon during the Pleistocene. Climate of the Past, 11(1), 45–61. doi:10.5194/cp-11-45-2015
  56. Yin, Q. Z., Singh, U. K., Berger, A., Guo, Z. T., & Crucifix, M. (2014). Relative impact of insolation and the Indo-Pacific warm pool surface temperature on the East Asia summer monsoon during the MIS-13 interglacial. Climate of the Past, 10(5), 1645–1657. doi:10.5194/cp-10-1645-2014
  57. Maris, M. N. A., de Boer, B., Ligtenberg, S. R. M., Crucifix, M., van de Berg, W. J., & Oerlemans, J. (2014). Modelling the evolution of the Antarctic ice sheet since the last interglacial. The Cryosphere, 8(4), 1347–1360. doi:10.5194/tc-8-1347-2014
  58. Bounceur, N., Crucifix, M., & Wilkinson, R. D. (2014). Earth System Dynamics Discussions, 5(2), 901–943. doi:10.5194/esdd-5-901-2014
  59. De Vleeschouwer, D., Crucifix, M., Bounceur, N., & Claeys, P. (2014). The impact of astronomical forcing on the Late Devonian greenhouse climate. Global and Planetary Change, 120(0), 65–80. doi:10.1016/j.gloplacha.2014.06.002
  60. Crucifix, M. (2013). Why could ice ages be unpredictable? Climate of the Past, 9(5), 2253–2267. doi:10.5194/cp-9-2253-2013
  61. De Saedeleer, B., Crucifix, M., & Wieczorek, S. (2013). Is the astronomical forcing a reliable and unique pacemaker for climate? A conceptual model study. Climate Dynamics, 40, 273–294. doi:10.1007/s00382-012-1316-1
  62. Brönnimann, S., Franke, J., Breitenmoser, P., Hakim, G. J., Goosse, H., Widmann, M., Crucifix, M., Gebbie, G., Annan, J., & van der Schrier, G. (2012). Transient state estimation in paleoclimatology using data assimilation. PAGES Newsletter, 21(2), 74–75.
  63. Crucifix, M., Harrison, S., & Brierley, C. (2012). Recent and deep pasts in paleoclimate model intercomparison project. Eos, Transactions American Geophysical Union, 93(51), 539–539. doi:10.1029/2012EO510010
  64. Rohling, E. J., Sluijs, A., Dijkstra, H. A., Köhler, P., van de Wal, R. S. W., von der Heydt, A. S., Beerling, D. J., Berger, A., Bijl, P. K., Crucifix, M., DeConto, R., Drijfhout, S. S., Fedorov, A., Foster, G. L., Ganopolski, A., Hansen, J., Hönisch, B., Hooghiemstra, H., Huber, M., … Zeebe, R. E. (2012). Making sense of palaeoclimate sensitivity. Nature, 491(7426), 683–691. doi:10.1038/nature11574
  65. Crucifix, M. (2012). Traditional and novel approaches to palaeoclimate modelling. Quaternary Science Reviews, 57(0), 1–16. doi:10.1016/j.quascirev.2012.09.010
  66. De Vleeschouwer, D., Da Silva, A. C., Boulvain, F., Crucifix, M., & Claeys, P. (2012). Precessional and half-precessional climate forcing of Mid-Devonian monsoon-like dynamics. Climate of the Past, 8(1), 337–351. doi:10.5194/cp-8-337-2012
  67. Crucifix, M. (2012). Oscillators and relaxation phenomena in Pleistocene climate theory. Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, 370(1962), 1140–1165. doi:10.1098/rsta.2011.0315
  68. Crucifix, M. (2011). La climatologie aujourd’hui. Revue Des Questions Scientifiques, 182(1), 3–32.
  69. Dubinkina, S., Goosse, H., Sallaz-Damaz, Y., Crespin, E., & Crucifix, M. (2011). Testing a particle filter to reconstruct climate changes over the past centuries. International Journal of Bifurcation and Chaos, 21, 3611–3618. doi:10.1142/S0218127411030763
  70. Crucifix, M. (2011). How can a glacial inception be predicted? The Holocene, 21(5), 831–842. doi:10.1177/0959683610394883
  71. Ruddiman, W., Crucifix, M., & Oldfield, F. (2011). Introduction to the early-Anthropocene Special Issue. The Holocene, 21(5), 713–713. doi:10.1177/0959683611398053
  72. Deleersnijder, E., Bard, E., Crucifix, M., Fichefet, T., Hanaert, E., Jouzel, J., Le Treut, H., Lermusiaux, P., A., M., Primau, F., & Wolanski, E. (6 AD). Le réchauffement climatique est réel et l’Homme en est le principal responsable. Le Soir, 15.
  73. Crucifix, M., & Rougier, J. (2009). On the use of simple dynamical systems for climate predictions: A Bayesian prediction of the next glacial inception. European Physics Journal - Special Topics, 174, 11–31. doi:10.1140/epjst/e2009-01087-5
  74. Otto-Bliesner, B. L., Schneider, R., Brady, E. C., Kucera, M., Abe-Ouchi, A., Bard, E., Braconnot, P., Crucifix, M., Hewitt, C. D., Kageyama, M., Marti, O., Paul, A., Rosell-Mele, A., Waelbroeck, C., Weber, S. L., Weinelt, M., & Yu, Y. (2009). A comparison of PMIP2 model simulations and the MARGO proxy reconstruction for tropical sea surface temperatures at last glacial maximum. Climate Dynamics, 32(6), 799–815. doi:10.1007/s00382-008-0509-0
  75. Rojas, M., Moreno, P. I., Kageyama, M., Crucifix, M., Hewitt, C., Abe-Ouchi, A., Ohgaito, R., Brady, E. C., & Hope, P. (2009). The Southern Westerlies during the last glacial maximum in PMIP2 simulations. Climate Dynamics, 32(4), 525–548. doi:10.1007/s00382-008-0421-7
  76. Yin, Q. Z., Berger, A., & Crucifix, M. (2009). Individual and combined effects of ice sheets and precession on MIS-13 climate. Climate of the Past, 5(2), 229–243.
  77. Crucifix, M., Claussen, M., Ganssen, G., Guiot, J., Guo, Z., Kiefer, T., Loutre, M. F., Rousseau, D. D., & Wolff, E. (2009). Preface "Climate change: from the geological past to the uncertain future – a symposium honouring André Berger". Climate of the Past, 5(4), 707–711.
  78. Goidts, E., van Wesemael, B., & Crucifix, M. (2009). Magnitude and sources of uncertainties in soil organic carbon (SOC) stock assessments at various scales. European Journal of Soil Science, 60(5), 723–739. doi:10.1111/j.1365-2389.2009.01157.x
  79. Crucifix, M. (2009). European Review, 17(2), 371–402. doi:10.1017/S106279870900074X
  80. Loutre, M., Crucifix, M., & Berger, A. (2008). Chasing An Analogue For The Holocene : The Astronomical Forcing. AGU Fall Meeting Abstracts, B1.
  81. Yin, Q., Berger, A., Driesschaert, E., Goosse, H., Loutre, M. F., & Crucifix, M. (2008). The Eurasian ice sheet reinforces the East Asian summer monsoon during the interglacial 500 000 years ago. Climate of the Past, 4(2), 79–90. doi:10.5194/cp-4-79-2008
  82. Murakami, S., Ohgaito, R., Abe-Ouchi, A., Crucifix, M., & Otto-Bliesner, B. L. (0 AD). Global-scale energy and freshwater balance in glacial climate: A comparison of three PMIP2 LGM simulations. Journal of Climate, 21(19), 5008–5033. doi:10.1175/2008JCLI2104.1
  83. Crucifix, M. (0 AD). Global change: Climate’s astronomical sensors. Nature, 456(7218), 47–48. doi:10.1038/456047a
  84. Taylor, K. E., Crucifix, M., Braconnot, P., Hewitt, C. D., Doutriaux, C., Webb, M. J., Broccoli, A. J., & Mitchell, J. F. B. (2007). Estimating shortwave radiative forcing and response in climate models. Journal of Climate, 20, 2530–2543. doi:10.1175/JCLI14143.1
  85. Weber, S. L., Drijfhout, S. S., Abe-Ouchi, A., Crucifix, M., Eby, M., Ganopolski, A., Murakami, M., Otto-Bliesner, B., & Peltier, W. R. (2007). The modern and glacial overturning circulation in the Atlantic ocean in PMIP coupled experiments. Climate of the Past, 3, 51–64.
  86. Braconnot, P., Otto-Bliesner, B. L., Harrison, S., Joussaume, S., Peterschmitt, J. Y., Abe-Ouchi, A., Crucifix, M., Driesschaert, E., Fichefet, T., Hewitt, C. D., Kageyama, M., Kitoh, A., Laîné, A., Loutre, M. F., Marti, O., Merkel, U., Ramstein, G., Valdes, P., Weber, S. L., … Zhao, Y. (2007). Results of PMIP2 coupled simulations of the Mid Holocene and Last Glacial Maximum – Part 2: feedbacks with emphasis on the location of the ITCZ and mid- and high latitudes heat budget. Climate of the Past, 3, 279–296.
  87. Braconnot, P., Otto-Bliesner, B. L., Harrison, S., Joussaume, S., Peterschmitt, J. Y., Abe-Ouchi, A., Crucifix, M., Driesschaert, E., Fichefet, T., Hewitt, C. D., Kageyama, M., Kitoh, A., La\^\iné, A., Loutre, M. F., Marti, O., Merkel, U., Ramstein, G., Valdes, P., Weber, S. L., … Zhao, Y. (2007). Results of PMIP2 coupled simulations of the Mid Holocene and Last Glacial Maximum – Part 1: experiments and large-scale features. Climate of the Past, 3, 261–277. doi:10.5194/cp-3-261-2007
  88. Otto-Bliesner, B. L., Hewitt, C. D., Marchitto, T. M., Brady, E., Abe-Ouchi, A., Crucifix, M., Murakami, S., & Weber, S. L. (2007). Last Glacial Maximum ocean thermohaline circulation: PMIP2 model intercomparisons and data constraints. Geophysical Research Letters, 34, L12706.
  89. Edwards, T. L., Crucifix, M., & Harrison, S. P. (2007). Using the past to constrain the future: how the palaeorecord can improve estimates of global warming. Prog. Phys. Geogr., 31, 481. doi:10.1177/0309133307083295
  90. Weber, S. L., Drijfhout, S. S., Abe-Ouchi, A., Crucifix, M., Eby, M., Ganopolski, A., Murakami, S., Otto-Bliesner, B., & Peltier, W. R. (2007). The modern and glacial overturning circulation in the Atlantic ocean in PMIP coupled model simulations. Climate of the Past, 3(1), 51–64. doi:10.5194/cp-3-51-2007
  91. Hewitt, C. D., Broccoli, A. J., Crucifix, M., Gregory, J. M., Mitchell, J. F. B., & Stouffer, R. J. (2006). The effect of a large freshwater perturbation on the Glacial Atlantic Ocean using a coupled general circulation model. Journal of Climate, 19, 4436—4447. doi:10.1175/JCLI3867.1
  92. Johns, T. C., Durman, C. F., Banks, H. T., Roberts, M. J., McLaren, A. J., Ridley, J. K., Senior, C. A., Williams, K. D., Jones, A., Rickard, G. J., Cusack, S., Ingram, W. J., Crucifix, M., Sexton, D. M. H., Joshi, M. M., Dong, B. W., Spencer, H., Hill, R. S. R., Gregory, J. M., … Searl, Y. (2006). The new Hadley Centre climate model HadGEM1: Evaluation of coupled simulations. Journal of Climate, 19(7), 1327–1353.
  93. Crucifix, M. (2006). Does the Last Glacial Maximum constrain climate sensitivity? Geophysical Research Letters, 33, L18701. doi:10.1029/2006GL027137
  94. Masson, V., Kageyama, M., Braconnot, P., Charbit, S., Krinner, G., Ritz, C., Guilyardi, E., Hoffman, G., Jouzel, J., Abe-Ouchi, A., Crucifix, M., Gladstone, R., Hewitt, C. D., Kitoh, A., Legrande, A., Marti, O., Merkel, U., Motoi, T., Ohgaito, R., … Wolk, F. (2006). Past and future polar amplification of climate change: climate mode intercomparison and ice-core constraints. Climate Dynamics, 26(5), 513–519. doi:10.1007/s00382-005-0081-9
  95. Kageyama, M., La\^\iné, A., Abe-Ouchi, A., Braconnot, P., Cortijo, E., Crucifix, M., de Vernal, A., Guiot, J., Hewitt, C. D., Kitoh, A., Kucera, M., Marti, O., Ohgaito, R., Otto-Bliesner, B., Peltier, W. R., Rosell-Melé, A., Vettoretti, G., Weber, S. L., Yu, Y., & Members, M. A. R. G. O. P. (2006). Last Glacial Maximum temperatures over the North Atlantic, Europe and western Siberia: a comparison between PMIP models, MARGO sea-surface temperatures and pollen-based reconstructions. Quat. Sci. Rev., 25(17-18), 2082–2102. doi:10.1016/J.quascirev.2006.02.010
  96. Crucifix, M., & Berger, A. (2006). How long will our interglacial be? Eos, Trans. Am. Geophys. Union, 87(35), 352. doi:10.1029/2006EO350007
  97. Crucifix, M., Loutre, M. F., & Berger, A. (2006). The climate response to the astronomical forcing. Space Sci. Rev., 125(1-4), 213–226. doi:10.1007/s11214-006-9058-1
  98. Banks, W. E., d’Errico, F., Dibble, H., Krishtalka, M., West, D., Olsewski, D., Peterson, A. T., Anderson, D. G., Gillamn, J. C., Montet-White, A., Crucifix, M., Marean, C. W., Sanchez-Goñi, M. F., Wohlfarth, B., & Vanhaeran, M. (2006). Eco-cultural niche modeling: new tools for reconstructing the geography and ecology of past human populations. Paleoanthropology, 1(68-83).
  99. Petoukhov, V., Claussen, M., Berger, A., Crucifix, M., Eby, M., Eliseev, A. V., Fichefet, T., Ganopolski, A., Goosse, H., Kamenkovich, I., Mokhov, I., Montoya, M., Mysak, L. A., Sokolov, A., Stone, P., Wang, Z., & Weaver, A. J. (2005). EMIC intercomparison project (EMIP-CO_2): comparative analysos of EMIC simulations of climae, and of equilibrium and transient responses to atmospheric CO_2 doubling. Climate Dynamics, 25, 363–385. doi:10.1007/s00382-005-0042-3
  100. Sanchez-Goñi, M. F., Loutre, M. F., Crucifix, M., Peyron, O., Santos, L., Duprat, J., Turon, J. L., & Peypouquet, J. P. (2005). Increasing vegetation and climate gradient in Western Europe over the Last Glacial Inception (122-110 ka): models-data comparison. Earth and Planetary Science Letters, 231, 111–130.
  101. Crucifix, M., Loutre, M. F., & Berger, A. (2005). Commentary on "the anthropogenic greenhouse era began thousands of years ago". Climatic Change, 69, 419–426.
  102. Crucifix, M. (2005). Carbon isotopes in the glacial ocean: a model study. Paleoceanography, 20, PA4020. doi:10.1029/2005PA001131
  103. Crucifix, M., Braconnot, P., Harrison, S. P., & Otto-Bliesner, B. (2005). Second phase of Paleoclimate Modelling Intercomparison Project. Eos, Trans. Am. Geophys. Union, 86(28), 264.
  104. Crucifix, M., & Hewitt, C. D. (2005). Impact of vegetation changes on the dynamics of the atmosphere at the Last Glacial Maximum. Climate Dynamics, 25(5), 447–459. doi:10.1007/s00382-005-0013-8
  105. Crucifix, M., Betts, R. A., & Hewitt, C. D. (2005). Pre-industrial-potential and Last Glacial Maximum global vegetation simulated with a coupled climate-biosphere model: Diagnosis of bioclimatic relationships. Global and Planetary Change, 45(4), 295–312, 10.1016/j.gloplach.20.
  106. Crucifix, M., Betts, R. A., & Cox, P. M. (2005). Vegetation and climate variability : a GCM modelling study. Climate Dynamics, 24(5), 457–467, 10.1007/s00382–004-.
  107. Rahmstorf, S., Crucifix, M., Ganopolski, A., Goosse, H., Kamenkovich, I., Knutti, R., Lohmann, G., Marsh, R., Mysak, L. A., Wang, Z., & Weaver, A. J. (2005). Thermohaline circulation hysteresis: A model intercomparison. Geophysical Research Letters, 32(23), L23605.
  108. Krinner, G., Mangerud, J., Jacobson, M., Crucifix, M., Ritz, C., & Svendsen, J. (2004). Enhancement of ice sheet growth by ice dammed lakes. Nature, 427, 429–432. doi:10.1038/nature02233
  109. Brovkin, V., Levis, S., Loutre, M. F., Crucifix, M., Claussen, M., Ganopolski, A., Kubatzki, C., & Petoukhov, V. (2003). Stability analysis of the climate-vegetation system in the northern high latitudes. Climatic Change, 57(1-2), 119–138.
  110. Berger, A., Loutre, M. F., & Crucifix, M. (2003). The earth climate in the next hundred thousand years. Surv. Geoph, 24, 117–138.
  111. Crucifix, M., & Loutre, F. (2002). Transient simulations over the last interglacial period (126-115 kyr BP): feedback and forcing analysis. Climate Dynamics, 19(5), 417–433. doi:10.1007/s00382-002-0234-z
  112. Crucifix, M., Loutre, M. F., Tulkens, P., Fichefet, T., & Berger, A. (2002). Climate evolution during the Holocene: A study with an Earth system model of intermediate complexity. Climate Dynamics, 19, 43–60. doi:10.1007/s00382-001-0208-6
  113. Crucifix, M., & Berger, A. (2002). Modelling ocean-ice sheets interactions during the last deglaciation. Paleoceanography, 17(4), doi:10.1029/2001PA000702. doi:10.1029/2001PA000702
  114. Claussen, M., Mysak, L., Weaver, A., Crucifix, M., Fichefet, T., Loutre, M. F., Weber, S., Alcamo, J., Alexeev, V., Berger, A., Calov, R., Ganopolski, A., Goosse, H., Lohmann, G., Lunkeit, F., Mokhov, I., Petoukhov, V., Stone, P., & Wang, Z. (2002). Earth system models of intermediate complexity: closing the gap in the spectrum of climate system models. Climate Dynamics, 18(7), 579–586. doi:10.1007/s00382-001-0200-1
  115. Crucifix, M., & Berger, A. (2002). Simulation of ocean-ice sheet interactions during the last deglaciation. Paleoceanography, 17(4), 6–1–6–18. doi:10.1029/2001pa000702
  116. Crucifix, M., Loutre, M. F., Lambeck, K., & Berger, A. (2001). Effect of Isostatic Rebound on Modelled Ice Volume Variations over the last 200 kyr. Earth and Planetary Science Letters, 184, 623–633.
  117. Galtayries, A., Crucifix, M., Blanchard, G., Terwagne, G., & Sporken, R. (1999). Preparation and characterisation of mixed oxide (Ce,Zr)O-2 thin films on Si(111) substrates. Applied Surface Science, 142, 159–163.

Gray literature

  1. Crucifix, M. (2016). Climate science: Earth’s narrow escape from a big freeze. Nature, 529(7585), 162–163. doi:10.1038/529162a
  2. Crucifix, M., Zorita, E., & Peterschmitt, J. Y. (2014). Third general meeting of PMIP3. PAGES Magazine, 22(2), 47.
  3. Edwards, T., Annan, J., Crucifix, M., Gebbie, G., & Paul, A. (2012). Best-of-both-worlds estimates for time slices in the past. PAGES Newsletter, 21(2), 76–77.
  4. Hakim, G. J., Annan, J., Brönnimann, S., Crucifix, M., Edwards, T., Goosse, H., Paul, A., van der Schrier, G., & Widmann, M. (2012). Overview of data assimlation methods. PAGES Newsletter, 21(2), 72–73.
  5. Annan, J. D., Crucifix, M., Edwards, T., & Paul, A. (2012). Parameter estimation using paleodata assimilation. PAGES Newsletter, 21(2), 78–79.
  6. Schmittner, A., Sarnthein, M., Hinkel, H., Bartoli, G., Bicvkert, T., Crucifix, M., Crudeli, D., Groenveld, J., Kösters, F., Mikolajewicz, U., Millo, C., Reijmer, J., Schäfer, P., Schmidt, D., Schneider, B., Schulz, M., Steph, S., Tiedemann, R., Veinelt, M., & Zuvela, M. (2004). Global impact of the Panamian seaway closure. Eos, Trans. Am. Geophys. Union, 85(49), 526. doi:10.1029/2004EO490010