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Références Bibliographiques

Livres

Damiens Devismes, "Découvrir l'astronomie pour les deb",  Editions QI, 2010.

André Brahic, Michel Hoffert, René Maury, André Schaaf, Marc Tardy, Armelle Baldeyrou-Bailly, Gilles Merzeraud, Jean-Yves Daniel, "Sciences de la Terre et de l'Univers",  Edition Vuibert, 3e édition, 2006.

Alain Foucault et Jean Jouzel, "Climatologie et Paléoclimatologie", Edition Dunod, 2e édition,  2016.

Gilbert Boillot, Philippe Huchon, Yves Lagabrielle, Jacques Boutler, "Introduction à la géologie", Edition Dunod, 4e édition, 2008.

Hervé Chamley et Jean-François Deconinck, "Bases de sédimentologie", Edition Dunod, 3e édition, 2011.

Sites internet

https://www.cea.fr/comprendre/Pages/matiere-univers/

Une collision galatique a peut-être provoqué la formation du Système solaire, site ESA.

Articles Scientifiques

Astronomie

Michele T. Bannister, Brett J. Gladman, J. J. Kavelaars, Jean-Marc Petit, Kathryn Volk, Ying-Tung Chen, Mike Alexandersen, Stephen D. J. Gwyn, Megan E. Schwamb, Edward Ashton, Susan D. Benecchi, Nahuel Cabra, Rebekah I. Dawson, Audrey Delsanti, Wesley C. Fraser, Mikael Granvik, Sarah Greenstreet, Aurélie Guilbert-Lepoutre, Wing-Huen Ip, Marian Jakubik, R. Lynne Jones, Nathan A. Kaib, Pedro Lacerda, Christa Van Laerhoven, Samantha Lawler, Matthew J. Lehner7, Hsing Wen Lin, Patryk Sofia Lykawka, Michaël Marsset, Ruth Murray-Clay, Rosemary E. Pike, Philippe Rousselot, Cory Shankman, Audrey Thirouin, Pierre Vernazza, and Shiang-Yu Wang, OSSOS. VII. 800+ Trans-Neptunian Objects—The Complete Data Release, The Astrophysical Journal, 2018. https://doi.org/10.3847/1538-4365/aab77a

Allen, P.A., Etienne, J.L., 2008. Sedimentary challenge to Snowball Earth. Nat. Geosci. 1, 817–825. https://doi.org/10.1038/ngeo355

Brahic et al. , 2006. Sciences de la Terre et de l'Univers, Edition Vuibert, 3e édition, 748 p.

Komiya, T., Maruyama, S., Hirata, T., Yurimoto, H., Nohda, S., 2004. Geochemistry of the oldest MORB and OIB in the Isua Supracrustal Belt, southern West Greenland: Implications for the composition and temperature of early Archean upper mantle. Isl. Arc 13, 47–72. https://doi.org/10.1111/j.1440-1738.2003.00416.x

Komiya, T., Yamamoto, S., Aoki, S., Koshida, K., Shimojo, M., Sawaki, Y., Aoki, K., Sakata, S., Yokoyama, T.D., Maki, K., Ishikawa, A., Hirata, T., Collerson, K.D., 2017. A prolonged granitoid formation in Saglek Block, Labrador: Zonal growth and crustal reworking of continental crust in the Eoarchean. Geosci. Front. 8, 355–385. https://doi.org/10.1016/j.gsf.2016.06.013

Homann, M., 2019. Earliest life on Earth: Evidence from the Barberton Greenstone Belt, South Africa. Earth-Sci. Rev. 196, 102888. https://doi.org/10.1016/j.earscirev.2019.102888

Javaux, E.J., 2019. Challenges in evidencing the earliest traces of life. Nature 572, 451–460. https://doi.org/10.1038/s41586-019-1436-4

Moorbath, S., 2005. Dating earliest life. Nature 434, 155–155. https://doi.org/10.1038/434155a

Sawada, H., 2020. Estimation of Secular Change in the Size of Continents for Understanding Early Crustal Development. Front. Earth Sci. 8, 541094. https://doi.org/10.3389/feart.2020.541094

Schrag, D.P., Adkins, J.F., McIntyre, K., Alexander, J.L., Hodell, D.A., Charles, C.D., McManus, J.F., 2002. The oxygen isotopic composition of seawater during the Last Glacial Maximum. Quat. Sci. Rev. 21, 331–342. https://doi.org/10.1016/S0277-3791(01)00110-X

Warke, M.R., Di Rocco, T., Zerkle, A.L., Lepland, A., Prave, A.R., Martin, A.P., Ueno, Y., Condon, D.J., Claire, M.W., 2020. The Great Oxidation Event preceded a Paleoproterozoic “snowball Earth.” Proc. Natl. Acad. Sci. 117, 13314–13320. https://doi.org/10.1073/pnas.2003090117

 Géosciences marines

Fraass, A.J., Kelly, D.C., Peters, S.E., 2015. Macroevolutionary History of the Planktic Foraminifera. Annu. Rev. Earth Planet. Sci. 43, 139–166. https://doi.org/10.1146/annurev-earth-060614-105059

 Agassiz, L., 1840. Études sur les glaciers. Privately Published, Neuchatel.

Agassiz, E.C., 1885. Louis Agassiz, his Life and Correspondance, second ed. Houghton, Mifflin & Co, Boston.

Boulton, G.S., van der Meer, J.J.M., Beets, D.J., Hart, J.K., Ruegg, G.H.J., 1999. The sedimentary and structural evolution of a recent push moraine complex: Holmstrømbreen, Spitsbergen. Quaternary Science Reviews 18, 339e371. https://doi.org/10.1016/S1571-0866(04)80103-9

Boylan, P.J., 1998. Lyell and the dilemma of Quaternary glaciations. Geological Society of London Special Publications 143, 145e159. https://doi.org/10.1144/GSL.SP.1998.143.01.13

Buckland, W., 1840. Memoir on the evidences of glaciers in Scotland and the north of England. Proceedings of the Geological Society of London 3. 332e337 and 345e348.

Elverhøi, A., Fjeldskaar, W., Solheim, A., Nyland-Berg, M., Russwurm, L., 1993. The Barents Sea-Ice sheet e a model of its growth and decay during the last ice maximum. Quaternary Science Reviews 12, 863e873. https://doi.org/10.1016/0277-3791(93)90025-H

Esmark, J., 1824. Bidrag til vor Jordklodes Historie. Magazin for Naturvidenskaberne 2, 29e54.

Hald, M., Dokken, T., Mikalsen, G., 2001. Abrupt climatic change during the last interglacial-glacial cycle in the polar North Atlantic. Marine Geology 176,121e137. https://doi.org/10.1016/S0025-3227(01)00158-X

Holmström, L.P., 1865. Märken efter istiden, iagttagna i Skåne. Cronholmska boktryckeriet, Malmö.

Jakobsson, M., Mayer, L.A., Coakley, B., Dowdeswell, J.A., Forbes, S., Fridman, B., Hodnesdal, H., Noormets, R., Pedersen, R., Rebesco, M., Schenke, H.-W., Zarayskaya, Y.A., Accettella, D., Armstrong, A., Anderson, R.M., Bienhoff, P., Camerlenghi, A., Church, I., Edwards, M., Gardner, J.V., Hall, J.K., Hell, B., Hestvik, O.B., Kristoffersen, Y., Marcussen, C., Mohammad, R., Mosher, D., Nghiem, S.V., Pedrosa, M.T., Travaglini, P.G., Weatherall, P., 2012. The international bathymetric chart of the Arctic Ocean (IBCAO) version 3.0. Geophysical Research Letters 39. http://dx.doi.org/10.1029/2012GL052219. Published online 29 June 2012.

Kirchner, N., Hutter, K., Jakobsson, M., Gyllencreutz, R., 2011. Capabilities and limitations of numerical ice sheet models: a discussion for Earth-scientists and modelers. Quaternary Science Reviews 30, 3691e3704. https://doi.org/10.1016/j.quascirev.2011.09.012

Lambeck, K., 1995. Constraints on the Late Weichselian ice sheet over the Barents Sea from observations of raised shorelines. Quaternary Science Reviews 14, 1e 16. https://doi.org/10.1016/0277-3791(94)00107-M

Lambeck, K., 1996. Limits on the areal extent of the Barents Sea ice sheet in Late Weichselian time. Global and Planetary Change 12, 41e51. https://doi.org/10.1016/0921-8181(95)00011-9

Landvik, J.Y., Bondevik, S., Elverhøi, A., Fjeldskaar, W., Mangerud, J., Salvigsen, O., Siegert, M.J., Svendsen, J.I., Vorren, T.O., 1998. The last glacial maximum of Svalbard and the Barents Sea area: Ice sheet extent and configuration. Quaternary Science Reviews 17, 43e75. https://doi.org/10.1016/S0277-3791(97)00066-8

Lovén, S., 1839. Bidrag till kännedomen av molluskernas utveckling. Kungliga Vetenskaps Akademiens Handlingar 1839, 227e241.

Lovén, S., 1846. Några anmärkningar öfver de skandinaviska hafsmolluskernas geografiska utbredning. Kungliga Vetenskaps Akademiens Handlingar 1846, 252e274.

Martell, P., 1744. An Account of the Glacieres or Ice Alps in Savoy, in Two Letters, One from an English Gentleman to his Friend at Geneva; the Other from Peter Martel to the Said English Gentleman, as Laid Before the Royal Society. Pierre Martell, London.

Siegert, M.J., Dowdeswell, J.A., Hald, M., Svendsen, J.I., 2001. Modelling the Eurasian Ice Sheet through a full (Weichselian) glacial cycle. Global and Planetary Change 31, 367e385. https://doi.org/10.1016/S0921-8181(01)00130-8

Siegert, M.J., Dowdeswell, J.A., 2004. Numerical reconstructions of the Eurasian ice sheet and climate during the Late Weichselian. Quaternary Science Reviews 23, 1273e1283. https://doi.org/10.1016/j.quascirev.2003.12.010

Spielhagen, R.F., Baumann, K.H., Erlenkeuser, H., Nowaczyk, N.R., NørgaardPedersen, N., Vogt, C., Weiel, D., 2004. Arctic Ocean deep-sea record of northern Eurasian ice sheet history. Quaternary Science Reviews 23, 1455e1483. https://doi.org/10.1016/j.quascirev.2003.12.015

Bergsten, H., 1994. Recent benthic foraminifera of a transect from the North Pole to the Yermak Plateau, eastern central Arctic Ocean. In: J. Thiede, T.O. Vorren and R.F. Spielhagen (Editors), Arctic Ocean Marine Geology. Mar. Geol., 119: 251-267. https://doi.org/10.1016/0025-3227(94)90184-8

Clark, D.L., Whitman, R.R., Morgan, K.A. and Mackay, S.D., 1980. Stratigraphy and glaciomarine sediments of the Amerasian Basin, central Arctic Ocean. Geol. Soc. Am. Spec. Pap., 181, 57 pp. https://doi.org/10.1130/SPE181-p1

Clark, D.L., 1990. Arctic Ocean ice cover; geologic history and climatic significance. In: A. Grantz, L. Johnson and J.F. Sweeney (Editors). The Arctic Ocean Region. (The Geology of North America, L.) Geol. Soc. Am., Boulder, CO, pp. 53-62. https://doi.org/10.1130/DNAG-GNA-L.53

Cronin, T.M., Holtz, T.R. and Whatley, R.C., 1994. Quaternary paleoceanography of the deep Arctic Ocean based on quantitative analysis of Ostracoda. In: J. Thiede, T.O. Vorren and R.F. Spielhagen (Editors), Arctic Ocean Marine Geology. Mar. Geol., 119: 305-332. https://doi.org/10.1016/0025-3227(94)90188-0

Gard, G., 1993. Late Quaternary coccoliths at the North Pole: Evidence of ice-free conditions and rapid sedimentation in the central Arctic Ocean. Geology, 21:227 230. https://doi.org/10.1130/0091-7613(1993)021%3C0227:LQCATN%3E2.3.CO;2

Knies, J. Vogt, C., 2003. Freshwater pulses in the eastern Arctic Ocean during Saalian and Early Weichselian ice-sheet collapse. Quaternary Research. 243:251. https://doi.org/10.1016/j.yqres.2003.07.008

Macko, S.A. and Aksu, A.E., 1986. Amino acid epimerization in planktonic foraminifera suggests slow sedimentation rates for Alpha Ridge, Arctic Ocean. Nature, 322: 730-732. Voir l'article.

Nürnberg, D., Wollenburg, I., Dethleff, D., Eicken, H., Kassens, H., Letzig, T., Reimnitz, E. and Thiede, J., 1994. Sediments in Arctic sea ice:implications for entrainment, transport and release. In: J. Thied~, T.O. Vorren and R.F. Spielhagen (Editors), Arctic Ocean Marine Geology. Mar. Geol., 119: 185-214. https://doi.org/10.1016/0025-3227(94)90181-3

Spielhagen, R.F. and Erlenkeuser, H., 1994. Stable oxygen and carbon isotopes in planktic foraminifers from Arctic Ocean surface sediments: Reflection of the low salinity surface water layer. In: J. Thiede, T.O. Vorren and R.F. Spielhagen (Editors), Arctic Ocean Marine Geology. Mar. Geol., 119:227 250. https://doi.org/10.1016/0025-3227(94)90183-X

Stein, R., Grobe, H. and Wahsner, M., 1994a. Organic carbon, carbonate, and clay mineral distributions in eastern central Arctic Ocean surface sediments. In: J. Thiede, T.O. Vorren and R.F. Spielhagen (Editors), Arctic Ocean Marine Geology. Mar. Geol., 119: 269-285. https://doi.org/10.1016/0025-3227(94)90185-6

Stein, R., Schubert, C., Vogt, C. and Fiitterer, D., 1994b. Stable isotope stratigraphy, sedimentation rates, and salinity changes in the Latest Pleistocene to Holocene eastern central Arctic Ocean. In: J. Thiede, T.O. Vorren and R.F. Spielhagen (Editors), Arctic Ocean Marine Geology. Mar. Geol., 119:333 355. https://doi.org/10.1016/0025-3227(94)90189-9

Vogt, C., Knies, J., Spielhagen, R.F., Stein., R., 2001. Detailed mineralogical evidence for two nearly identical glacial/deglacial cycles and Atlantic water advection to the Arctic Ocean during the last 90,000 years. Global and Planetary Change. 23:44. https://doi.org/10.1016/S0921-8181(01)00111-4

Vorren, T.O., 1989. Glacigenic sediments on a passive continental margin as exemplified by the Barents Sea. Mar. Geol, 85: 251-272. https://doi.org/10.1016/0025-3227(89)90156-4