The late Paleozoic era (~360-250 Ma) witnessed the vegetated Earth’s only known transition from an icehouse to a greenhouse climate. This transition brought Earth from the Phanerozoic’s most severe glaciation, the late Paleozoic ice age (LPIA), into a greenhouse climate that would dominate the next 220 million years of Earth history. Developing an understanding of the late Paleozoic icehouse climate and the mechanisms that drove Earth into a protracted greenhouse state are fundamental to the study of climate dynamics in both the distant past and the near future. The traditional understanding of late Paleozoic climate contends that massive continental-scale ice sheets formed when the southern hemisphere land masses were located near to the a...
International audienceIcehouse climate systems comprise an abbreviated portion of Earth history, tho...
The Late Palaeozoic Ice Age (LPIA), spanning approximately from ~320 Ma (Serpukhovian, late Mississi...
Climate patterns are influenced by internal variability and forcing. A major forcing is carbon dioxi...
The late Paleozoic era (~360-250 Ma) witnessed the vegetated Earth’s only known transition from an i...
International audienceAbstract. Earth's penultimate icehouse period, the late Paleozoic ice age (LPI...
International audienceAbstract. Earth's penultimate icehouse period, the late Paleozoic ice age (LPI...
International audienceAbstract. Earth's penultimate icehouse period, the late Paleozoic ice age (LPI...
Icehouses, such as the current glacial state and Late Paleozoic Ice Age (LPIA; ~340 to 290 million y...
Biotic response to climate change The Late Palaeozoic Ice Age (LPIA), spanning approximately from ~3...
The late Paleozoic deglaciation is the vegetated Earth’s only recorded icehouse-to-greenhouse transi...
The late Paleozoic Gondwanan ice age (LPGIA), which spans the late Carboniferous through early Permi...
The late Paleozoic deglaciation is the vegetated Earth’s only recorded icehouse-to-greenhouse transi...
The late Paleozoic Gondwanan ice age (LPGIA), which spans the late Carboniferous through early Permi...
International audienceIcehouse climate systems comprise an abbreviated portion of Earth history, tho...
[1] Contrasting views of the size, duration, and history of the Gondwanan continental ice sheets hav...
International audienceIcehouse climate systems comprise an abbreviated portion of Earth history, tho...
The Late Palaeozoic Ice Age (LPIA), spanning approximately from ~320 Ma (Serpukhovian, late Mississi...
Climate patterns are influenced by internal variability and forcing. A major forcing is carbon dioxi...
The late Paleozoic era (~360-250 Ma) witnessed the vegetated Earth’s only known transition from an i...
International audienceAbstract. Earth's penultimate icehouse period, the late Paleozoic ice age (LPI...
International audienceAbstract. Earth's penultimate icehouse period, the late Paleozoic ice age (LPI...
International audienceAbstract. Earth's penultimate icehouse period, the late Paleozoic ice age (LPI...
Icehouses, such as the current glacial state and Late Paleozoic Ice Age (LPIA; ~340 to 290 million y...
Biotic response to climate change The Late Palaeozoic Ice Age (LPIA), spanning approximately from ~3...
The late Paleozoic deglaciation is the vegetated Earth’s only recorded icehouse-to-greenhouse transi...
The late Paleozoic Gondwanan ice age (LPGIA), which spans the late Carboniferous through early Permi...
The late Paleozoic deglaciation is the vegetated Earth’s only recorded icehouse-to-greenhouse transi...
The late Paleozoic Gondwanan ice age (LPGIA), which spans the late Carboniferous through early Permi...
International audienceIcehouse climate systems comprise an abbreviated portion of Earth history, tho...
[1] Contrasting views of the size, duration, and history of the Gondwanan continental ice sheets hav...
International audienceIcehouse climate systems comprise an abbreviated portion of Earth history, tho...
The Late Palaeozoic Ice Age (LPIA), spanning approximately from ~320 Ma (Serpukhovian, late Mississi...
Climate patterns are influenced by internal variability and forcing. A major forcing is carbon dioxi...