Related Experiment Video
Updated: Jun 26, 2026

Evolution of Staircase Structures in Diffusive Convection
Published on: September 5, 2018
Northward drift of the Azores plume in the Earth's mantle
Maëlis Arnould1,2,3, Jérôme Ganne4, Nicolas Coltice5
1Laboratoire de Géologie, École Normale Supérieure, CNRS UMR 8538, PSL Research University, 75005, Paris, France. arnould@geologie.ens.fr.
Abstract:
Mantle plume fixity has long been a cornerstone assumption to reconstruct past tectonic plate motions. However, precise geochronological and paleomagnetic data along Pacific continuous hotspot tracks have revealed substantial drift of the Hawaiian plume. The question remains for evidence of drift for other mantle plumes. Here, we use plume-derived basalts from the Mid-Atlantic ridge to confirm that the upper-mantle thermal anomaly associated with the Azores plume is asymmetric, spreading over ~2,000 km southwards and ~600 km northwards. Using for the first time a 3D-spherical mantle convection where plumes, ridges and plates interact in a fully dynamic way, we suggest that the extent, shape and asymmetry of this anomaly is a consequence of the Azores plume moving northwards by 1-2 cm/yr during the past 85 Ma, independently from other Atlantic plumes. Our findings suggest redefining the Azores hotspot track and open the way for identifying how plumes drift within the mantle.
Related Concept Videos
Apparent Weight and the Earth's Rotation
For an object on the Earth's equator, the net centripetal force that accounts for its rotation is the Earth's pull towards its center, or the weight minus the normal force that prevents it from piercing into the Earth's surface. This force,...
Isothermal Processes
An ideal gas can also undergo isothermal expansion or compression.
For example, consider 1 mole of an ideal gas inside an isolated cylinder at initial volume V...
Magnetostatic Boundary Conditions
Coriolis Force
Influence of Earth's Curvature and Atmospheric Refraction on Leveling
Azimuths and Bearings

