To explore cause and consequences of past climate change, very accurate age models such as those provided by the astronomical timescale (ATS) are needed. Beyond 40 million years the accuracy of the ATS critically depends on the correctness of orbital models and radioisotopic dating techniques. Discrepancies in the age dating of sedimentary successions and the lack of suitable records spanning the middle Eocene have prevented development of a continuous astronomically calibrated geological timescale for the entire Cenozoic Era. We now solve this problem by constructing an independent astrochronological stratigraphy based on Earth's stable 405 kyr eccentricity cycle between 41 and 48 million years ago (Ma) with new data from deep-sea sediment...
Recently the astronomically calibrated geological timescale has been extended to the base of the Oli...
Recently the astronomically calibrated geological timescale has been extended to the base of the Oli...
The astronomical-tuned time scale is rapidly extended into the Paleogene but, due to the existence o...
To explore cause and consequences of past climate change, very accurate age models such as those pro...
The first complete cyclic sedimentary successions for the early Paleogene from drilling multiple hol...
International audienceUntil now, the middle Eocene has remained a poorly constrained interval of eff...
Timing is crucial to understanding the causes and consequences of events in Earth history. The calib...
Accurate age control of the late Tortonian to early Messinian (8.3-6.0 Ma) is essential to ascertain...
We extend existing high-resolution Oligocene–Miocene proxy records from Ocean Drilling Program (ODP)...
International audienceFive sections drilled in multiple holes over a depth transect of more than 220...
Accurate age control of the late Tortonian to early Messinian (8.3–6.0 Ma) is essential to ascertain...
The early Eocene represents a time of major changes in the global carbon cycle and fluctuations in g...
Deciphering the driving mechanisms of Earth system processes, including the climate dynamics express...
A significant discrepancy of up to 0.6 Myr exists between radio-isotopically calibrated and astronom...
A significant discrepancy of up to 0.6 Myr exists between radio-isotopically calibrated and astronom...
Recently the astronomically calibrated geological timescale has been extended to the base of the Oli...
Recently the astronomically calibrated geological timescale has been extended to the base of the Oli...
The astronomical-tuned time scale is rapidly extended into the Paleogene but, due to the existence o...
To explore cause and consequences of past climate change, very accurate age models such as those pro...
The first complete cyclic sedimentary successions for the early Paleogene from drilling multiple hol...
International audienceUntil now, the middle Eocene has remained a poorly constrained interval of eff...
Timing is crucial to understanding the causes and consequences of events in Earth history. The calib...
Accurate age control of the late Tortonian to early Messinian (8.3-6.0 Ma) is essential to ascertain...
We extend existing high-resolution Oligocene–Miocene proxy records from Ocean Drilling Program (ODP)...
International audienceFive sections drilled in multiple holes over a depth transect of more than 220...
Accurate age control of the late Tortonian to early Messinian (8.3–6.0 Ma) is essential to ascertain...
The early Eocene represents a time of major changes in the global carbon cycle and fluctuations in g...
Deciphering the driving mechanisms of Earth system processes, including the climate dynamics express...
A significant discrepancy of up to 0.6 Myr exists between radio-isotopically calibrated and astronom...
A significant discrepancy of up to 0.6 Myr exists between radio-isotopically calibrated and astronom...
Recently the astronomically calibrated geological timescale has been extended to the base of the Oli...
Recently the astronomically calibrated geological timescale has been extended to the base of the Oli...
The astronomical-tuned time scale is rapidly extended into the Paleogene but, due to the existence o...