Deep-Earth convection can be understood by studying hotspot volcanoes that form where mantle plumes rise up and intersect the lithosphere, the Earth's rigid outer layer. Hotspots characteristically leave age-progressive trails of volcanoes and seamounts on top of oceanic lithosphere, which in turn allow us to decipher the motion of these plates relative to "fixed" deep-mantle plumes, and their (isotope) geochemistry provides insights into the long-term evolution of mantle source regions. However, it is strongly suggested that the Hawaiian mantle plume moved approximately 15 degrees south between 80 and 50 million years ago. This raises a fundamental question about other hotspot systems in the Pacific, whether or not their mantle plumes expe...
Hotspots that form above upwelling plumes of hot material from the deep mantle typically leave narro...
Hotspots that form above upwelling plumes of hot material from the deep mantle typically leave narro...
Hotspots that form above upwelling plumes of hot material from the deep mantle typically leave narro...
Deep-Earth convection can be understood by studying hotspot volcanoes that form where mantle plumes ...
Deep-Earth convection can be understood by studying hotspot volcanoes that form where mantle plumes ...
Deep-Earth convection can be understood by studying hotspot volcanoes that form where mantle plumes ...
Deep-Earth convection can be understood by studying hotspot volcanoes that form where mantle plumes ...
Deep-Earth convection can be understood by studying hotspot volcanoes that form where mantle plumes ...
Deep-Earth convection can be understood by studying hotspot volcanoes that form where mantle plumes ...
Deep-Earth convection can be understood by studying hotspot volcanoes that form where mantle plumes ...
Deep-Earth convection can be understood by studying hotspot volcanoes that form where mantle plumes ...
Deep-Earth convection can be understood by studying hotspot volcanoes that form where mantle plumes ...
Deep-Earth convection can be understood by studying hotspot volcanoes that form where mantle plumes ...
International audienceHotspots that form above upwelling plumes of hot material from the deep mantle...
Hotspots that form above upwelling plumes of hot material from the deep mantle typically leave narro...
Hotspots that form above upwelling plumes of hot material from the deep mantle typically leave narro...
Hotspots that form above upwelling plumes of hot material from the deep mantle typically leave narro...
Hotspots that form above upwelling plumes of hot material from the deep mantle typically leave narro...
Deep-Earth convection can be understood by studying hotspot volcanoes that form where mantle plumes ...
Deep-Earth convection can be understood by studying hotspot volcanoes that form where mantle plumes ...
Deep-Earth convection can be understood by studying hotspot volcanoes that form where mantle plumes ...
Deep-Earth convection can be understood by studying hotspot volcanoes that form where mantle plumes ...
Deep-Earth convection can be understood by studying hotspot volcanoes that form where mantle plumes ...
Deep-Earth convection can be understood by studying hotspot volcanoes that form where mantle plumes ...
Deep-Earth convection can be understood by studying hotspot volcanoes that form where mantle plumes ...
Deep-Earth convection can be understood by studying hotspot volcanoes that form where mantle plumes ...
Deep-Earth convection can be understood by studying hotspot volcanoes that form where mantle plumes ...
Deep-Earth convection can be understood by studying hotspot volcanoes that form where mantle plumes ...
International audienceHotspots that form above upwelling plumes of hot material from the deep mantle...
Hotspots that form above upwelling plumes of hot material from the deep mantle typically leave narro...
Hotspots that form above upwelling plumes of hot material from the deep mantle typically leave narro...
Hotspots that form above upwelling plumes of hot material from the deep mantle typically leave narro...
Hotspots that form above upwelling plumes of hot material from the deep mantle typically leave narro...