Related Experiment Video
Updated: Aug 13, 2025

How to Ignite an Atmospheric Pressure Microwave Plasma Torch without Any Additional Igniters
Published on: April 16, 2015
Ignition of the southern Atlantic seafloor spreading machine without hot-mantle booster
Daniel Sauter1, Gianreto Manatschal2, Nick Kusznir3
1Institut Terre et Environnement de Strasbourg (ITES), Université de Strasbourg, 5 Rue Descartes, 67084, Strasbourg, France. daniel.sauter@unistra.fr.
Abstract:
The source of massive magma production at volcanic rifted margins remains strongly disputed since the first observations of thick lava piles in the 1980s. However, volumes of extruded and intruded melt products within rifted continental crust are still not accurately resolved using geophysical methods. Here we investigate the magma budget alongside the South Atlantic margins, at the onset of seafloor spreading, using high-quality seismic reflection profiles to accurately estimate the oceanic crustal thickness. We show that, along ~ 75% of the length of the Early-Cretaceous initial spreading centre, the crustal thickness is similar to regular oceanic thickness with an age > 100 Ma away from hot spots. Thus, most of the southernmost Atlantic Ocean opened without anomalously hot mantle, high magma supply being restricted to the Walvis Ridge area. We suggest that alternative explanations other than a hotter mantle should be favoured to explain the thick magmatic layer of seaward dipping reflectors landward of the initial mid-oceanic ridge.
Related Concept Videos
01:30Magnetic Evidence for Seafloor Spreading
01:24Seafloor Spreading Hypothesis
01:29Bathymetric Evidence for Seafloor Spreading
01:26Volcanic Hot Spots
01:27Earth's Mantle
01:26Ocean-Continent Convergent Plate Boundaries

