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 ~15° 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 experienced a similar am...
The Hawaii-Emperor and Louisville seamounts form the two most prominent time-progressive hotspot tra...
The Hawaii-Emperor and Louisville seamounts form the two most prominent time-progressive hotspot tra...
The Hawaii-Emperor and Louisville seamounts form the two most prominent time-progressive hotspot tra...
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 ...
The Hawaii-Emperor and Louisville seamounts form the two most prominent time-progressive hotspot tra...
The Hawaii-Emperor and Louisville seamounts form the two most prominent time-progressive hotspot tra...
The Hawaii-Emperor and Louisville seamounts form the two most prominent time-progressive hotspot tra...
The Hawaii-Emperor and Louisville seamounts form the two most prominent time-progressive hotspot tra...
The Hawaii-Emperor and Louisville seamounts form the two most prominent time-progressive hotspot tra...
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 ...
The Hawaii-Emperor and Louisville seamounts form the two most prominent time-progressive hotspot tra...
The Hawaii-Emperor and Louisville seamounts form the two most prominent time-progressive hotspot tra...
The Hawaii-Emperor and Louisville seamounts form the two most prominent time-progressive hotspot tra...
The Hawaii-Emperor and Louisville seamounts form the two most prominent time-progressive hotspot tra...
The Hawaii-Emperor and Louisville seamounts form the two most prominent time-progressive hotspot tra...