The timing and duration of surface uplift associated with large igneous provinces provide important constraints on mantle convection processes. Here we review geological indicators of surface uplift associated with five continent-based magmatic provinces: Emeishan Traps (260 million years ago: Ma), Siberian Traps (251 Ma), Deccan Traps (65 Ma), North Atlantic (Phase 1, 61 Ma and Phase 2, 55 Ma), and Yellowstone (16 Ma to recent). All five magmatic provinces were associated with surface uplift. Surface uplift can be measured directly from sedimentary indicators of sea-level in the North Atlantic and from geomorpholocial indicators of relative uplift and tilting in Yellowstone. In the other provinces, surface uplift is inferred from the recor...
Elevations on Earth are dominantly controlled by crustal buoyancy, primarily through variations in c...
Abstract The frequent formation of large igneous provinces during the opening of the Atlantic Ocean ...
The hypothesis that a single mushroom-like mantle plume head can generate a large igneous province w...
Prevailing mantle plume models reveal that the roles of plume-lithosphere interactions in shaping su...
Numerical and fluid dynamic modelling predicts that mantle plumes should generate a broad domal upli...
Mantle convection is a fundamental planetary process. Its plate mode is established and expressed by...
Large igneous provinces (LIPs) are formed by enormous (i.e., frequently >106 km3) but short-lived ma...
The Middle Permian (c. 262 Ma) Emeishan Basalt Formation of SW China is a commonly cited example of ...
The available data, mainly topography, geoid, and heat flow, describing hotspots worldwide are exami...
International audienceLarge igneous provinces (LIPs) are known for their rapid production of enormou...
Large Igneous Provinces are exceptional intraplate igneous events throughout Earth’s history. Their ...
One of the striking exceptions to the mantle plume head-tail hypothesis that seeks to explain magmat...
When continents rift to form new ocean basins, the rifting'is sometimes accompanied by mas-sive...
Knowledge about large igneous provinces (LIPs) has played a fundamental role in shaping the prevaili...
We use model experiments to address the dynamics of magma upwelling during incipient break up of the...
Elevations on Earth are dominantly controlled by crustal buoyancy, primarily through variations in c...
Abstract The frequent formation of large igneous provinces during the opening of the Atlantic Ocean ...
The hypothesis that a single mushroom-like mantle plume head can generate a large igneous province w...
Prevailing mantle plume models reveal that the roles of plume-lithosphere interactions in shaping su...
Numerical and fluid dynamic modelling predicts that mantle plumes should generate a broad domal upli...
Mantle convection is a fundamental planetary process. Its plate mode is established and expressed by...
Large igneous provinces (LIPs) are formed by enormous (i.e., frequently >106 km3) but short-lived ma...
The Middle Permian (c. 262 Ma) Emeishan Basalt Formation of SW China is a commonly cited example of ...
The available data, mainly topography, geoid, and heat flow, describing hotspots worldwide are exami...
International audienceLarge igneous provinces (LIPs) are known for their rapid production of enormou...
Large Igneous Provinces are exceptional intraplate igneous events throughout Earth’s history. Their ...
One of the striking exceptions to the mantle plume head-tail hypothesis that seeks to explain magmat...
When continents rift to form new ocean basins, the rifting'is sometimes accompanied by mas-sive...
Knowledge about large igneous provinces (LIPs) has played a fundamental role in shaping the prevaili...
We use model experiments to address the dynamics of magma upwelling during incipient break up of the...
Elevations on Earth are dominantly controlled by crustal buoyancy, primarily through variations in c...
Abstract The frequent formation of large igneous provinces during the opening of the Atlantic Ocean ...
The hypothesis that a single mushroom-like mantle plume head can generate a large igneous province w...