Refinements of the geological timescale driven by the increasing precision and accuracy of radiometric dating have revealed an apparent correlation between large igneous provinces (LIPs) and intervals of Phanerozoic faunal turnover that has been much discussed at a qualitative level. However, the extent to which such correlations are likely to occur by chance has yet to be quantitatively tested, and other kill mechanisms have been suggested for many mass extinctions. Here, we show that the degree of temporal correlation between continental LIPs and faunal turnover in the Phanerozoic is unlikely to occur by chance, suggesting a causal relationship linking extinctions and continental flood basalts. The relationship is stronger for LIPs with h...
The temporal link between large igneous province (LIP) eruptions and at least half of the major exti...
The temporal coincidence between large igneous provinces (LIPs) and mass extinctions has led many to...
The approximate temporal coincidence between the five major extinc-tion events over the past 542 mil...
During the Phanerozoic, life on Earth experienced several mass extinctions, each associated with maj...
The temporal link between mass extinctions and large igneous provinces is well known. Here, we exami...
Contemporaneous occurrences of the geologic signals of ‘large impacts’, craton-associated continenta...
The approximate temporal coincidence between the five major extinc-tion events over the past 542 mil...
Large Igneous Provinces (LIPs) can have a significant global climatic effect as monitored by sedimen...
Abstract: Two prominent patterns have been recognized in Phanerozoic extinction data: (1) a quasi-pe...
Large Igneous Provinces (LIPs) can have a significant global climatic effect as monitored by sedimen...
Large Igneous Provinces (LIPs) can have a significant global climatic effect as monitored by sedimen...
The approximate temporal coincidence between the five major extinc-tion events over the past 542 mil...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Earth, Atmospheric, and Planeta...
The temporal coincidence between large igneous provinces (LIPs) and mass extinctions has led many to...
The temporal link between large igneous province (LIP) eruptions and at least half of the major exti...
The temporal link between large igneous province (LIP) eruptions and at least half of the major exti...
The temporal coincidence between large igneous provinces (LIPs) and mass extinctions has led many to...
The approximate temporal coincidence between the five major extinc-tion events over the past 542 mil...
During the Phanerozoic, life on Earth experienced several mass extinctions, each associated with maj...
The temporal link between mass extinctions and large igneous provinces is well known. Here, we exami...
Contemporaneous occurrences of the geologic signals of ‘large impacts’, craton-associated continenta...
The approximate temporal coincidence between the five major extinc-tion events over the past 542 mil...
Large Igneous Provinces (LIPs) can have a significant global climatic effect as monitored by sedimen...
Abstract: Two prominent patterns have been recognized in Phanerozoic extinction data: (1) a quasi-pe...
Large Igneous Provinces (LIPs) can have a significant global climatic effect as monitored by sedimen...
Large Igneous Provinces (LIPs) can have a significant global climatic effect as monitored by sedimen...
The approximate temporal coincidence between the five major extinc-tion events over the past 542 mil...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Earth, Atmospheric, and Planeta...
The temporal coincidence between large igneous provinces (LIPs) and mass extinctions has led many to...
The temporal link between large igneous province (LIP) eruptions and at least half of the major exti...
The temporal link between large igneous province (LIP) eruptions and at least half of the major exti...
The temporal coincidence between large igneous provinces (LIPs) and mass extinctions has led many to...
The approximate temporal coincidence between the five major extinc-tion events over the past 542 mil...