Backbone of the Americas—Patagonia to Alaska, (3–7 April 2006)

Paper No. 26
Presentation Time: 10:35 AM-7:45 PM

TELESEISMIC TOMOGRAPHIC IMAGES OF THE CENTRAL ANDES AT 21°S AND 25.5°S: AN INSIDE LOOK AT THE ALTIPLANO AND PUNA PLATEAUS


HEIT, Benjamin1, KOULAKOV, Ivan1, YUAN, Xiaohui1, ASCH, Guenter1, KIND, Rainer1 and WOELBERN, Ingo2, (1)Seismology, GFZ, Telegrafeberg, Potsdam, 14473, Germany, (2)Geophysik, Johann Wolfgang Goethe-Universität, Feldbergstr. 47, Frankfurt (Main), 60323, Germany, heit@gfz-potsdam.de

A set of 59 seismological stations was deployed in the Central Andes region at 21°S (Chile-Bolivia) along a profile ~600 km long and were operated between 2002 and 2004. The teleseismic tomographic images (from P- and S- waves) show low-velocity anomalies that are interpreted as the effects of melting or fluids at both flanks of the Altiplano plateau. Beneath the Central Volcanic Zone (CVZ) a low-velocity anomaly is interpreted to be caused by fluids that are the origin of the volcanic material from the CVZ. A low-velocity anomaly in the upper crust is interpreted as the Altiplano Low-Velocity Zone that appears to extend as far to the east as the Eastern Cordillera. A high-velocity body between 100 km and 150 km depth is interpreted as being part of the old cold lithosphere that detached from the base of the crust. The Brazilian Shield is thought to be responsible for the strong high-velocity anomaly on the eastern side of the Central Andes.

In addition, another set of 19 stations was deployed in the southern Argentine Puna along a profile ~200 km long and were run over the same period of time (2002-2004). The intention was to study the crustal thickness at 25.5°S, where delamination of the lithosphere was proposed to explain the higher elevation of the Puna plateau. Beneath the plateau a negative velocity anomaly is observed and interpreted here as being the location of fluid transfer between the deeper and shallower portions of the crust, that emanate from the Benioff zone at depths of ~200 km. This anomaly clearly divides in two branches: one to the west towards the volcanic arc (CVZ) and the other to the east where the back-arc volcanoes are located.