North Atlantic Drift Sediments Constrain Eocene Tidal Dissipation and the Evolution of the Earth-Moon System
Autor: | David De Vleeschouwer, Donald E. Penman, Simon D'haenens, Fei Wu, Thomas Westerhold, Maximilian Vahlenkamp, Carlotta Cappelli, Claudia Agnini, Wendy E. C. Kordesch, Daniel J. King, Robin van der Ploeg, Heiko Pälike, Sandra Kirtland Turner, Paul Wilson, Richard D. Norris, James C. Zachos, Steven M. Bohaty, Pincelli M. Hull |
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Přispěvatelé: | De Vleeschouwer, David, Penman, Donald E., D'HAENENS, Simon, Wu, Fei, Westerhold, Thomas, Vahlenkamp, Maximilian, Cappelli, Carlotta, Agnini, Claudia, Kordesch, Wendy E. C., King, Daniel J., van der Ploeg, Robin, Pälike, Heiko, Turner, Sandra Kirtland, Wilson, Paul, Norris, Richard D., Zachos, James C., Bohaty, Steven M., Hull, Pincelli M., Marine palynology and palaeoceanography, Stratigraphy & paleontology, D'haenens, Simon/0000-0003-1248-3188, King, Dan/0000-0001-7366-632X, Zachos, James C/0000-0001-8439-1886, D'haenens, Simon/0000-0003-1248-3188, Agnini, Claudia/0000-0001-9749-6003, De, Vleeschouwer, David/0000-0002-3323-807X, Penman, Donald E. E., King, Daniel J. J., Palike, Heiko, Zachos, James C. C., Bohaty, Steven M. M., Hull, Pincelli M. M., Penman, Donald, Kordesch, Wendy, King, Daniel, Kirtland Turner, Sandra, Norris, Richard, Zachos, James, Bohaty, Steven, Hull, Pincelli |
Jazyk: | angličtina |
Rok vydání: | 2023 |
Předmět: | |
Popis: | Cyclostratigraphy and astrochronology are now at the forefront of geologic timekeeping. While this technique heavily relies on the accuracy of astronomical calculations, solar system chaos limits how far back astronomical calculations can be performed with confidence. High-resolution paleoclimate records with Milankovitch imprints now allow reversing the traditional cyclostratigraphic approach: Middle Eocene drift sediments from Newfoundland Ridge are well-suited for this purpose, due to high sedimentation rates and distinct lithological cycles. Per contra, the stratigraphies of Integrated Ocean Drilling Program Sites U1408-U1410 are highly complex with several hiatuses. Here, we built a two-site composite and constructed a conservative age-depth model to provide a reliable chronology for this rhythmic, highly resolved ( |
Databáze: | OpenAIRE |
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