Plume–ridge interactions: ridgeward versus plate-drag plume flow
Explore this paper's citation graph
- Type
- article
- Published
- 2023-03-20
- Cited by
- 4
- References
- 81
- Access
- Open access
- OpenAlex
- https://openalex.org/W4327917240
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:257645338
Keywords
Plume, Mantle plume, Ridge, Geology, Lithosphere
References
- Plate tectonics on the Earth triggered by plume-induced subduction initiation
- Toward a generalized plate motion reference frame
- Initiation of a plume‐ridge interaction in the South Pacific recorded by high‐precision Pb isotopes along Hollister Ridge
- Asymmetric sea-floor spreading caused by ridge–plume interactions
- Glass compositions, plume‐ridge interaction, and hydrous melting along the Galápagos Spreading Center, 90.5°W to 98°W
- Broad plumes rooted at the base of the Earth's mantle beneath major hotspots
- The mean composition of ocean ridge basalts
- Fluxes and excess temperatures of mantle plumes inferred from their interaction with migrating mid-ocean ridges
- Friction of rocks
- Lateral flow and ponding of starting plume material
- Geophysical and Geochemical Evidence for Deep Temperature Variations Beneath Mid-Ocean Ridges
- Rift relocation — A geochemical and geochronological investigation of a palaeo-rift in northwest Iceland
- Interaction of mantle plumes and migrating mid-ocean ridges: Implications for the Galápagos plume-ridge system
- Mantle Shear-Wave Velocity Structure Beneath the Hawaiian Hot Spot
- La réunion: An example of channeled hot spot plume
- The dynamical origin of Hawaiian volcanism
- Asthenospheric flow and asymmetry of the East Pacific Rise, MELT area
- Repeat ridge jumps associated with plume‐ridge interaction, melt transport, and ridge migration
- Hotspot trails in the South Atlantic controlled by plume and plate tectonic processes
- Plume capture by divergent plate motions: implications for the distribution of hotspots, geochemistry of mid-ocean ridge basalts, and estimates of the heat flux at the core–mantle boundary
Cited by
- Mascarene basin asthenosphere reservoir source and composition revealed by Central Indian Ridge basalt geochemistry
- Effects of upper mantle wind on mantle plume morphology and hotspot track: Numerical modeling
- Review of structures and geodynamics of mid-ocean ridges
- Rift‐Induced Repositioning of Mantle Plumes Beneath the Indian Lithosphere: Implications for Deccan Volcanism
Related papers
- Geochemistry of mid ocean ridge basalts (MORB) from the northern Central Indian Ridge between 7°46 and 13°20 S: Implication of mantle heterogeneity influenced by Reunion hotspot plume?
- Interaction of a mantle plume and a segmented mid-ocean ridge: Results from numerical modeling
- Mid-ocean ridge jumps associated with hotspot magmatism
- An analytic model of axisymmetric mantle plume due to thermal and chemical diffusion
- Recycled gabbro signature in hotspot magmas unveiled by plume–ridge interactions
- Laboratory investigation of the interaction of off-axis mantle plumes and spreading centres