Skip to main navigation Skip to search Skip to main content

Velocity structure beneath the southern Puna plateau: Evidence for delamination

  • Frank J. Calixto
  • , Eric Sandvol
  • , Suzanne Kay
  • , Patrick Mulcahy
  • , Benjamin Heit
  • , Xiaohui Yuan
  • , Beatriz Coira
  • , Diana Comte
  • , Patricia Alvarado
  • University of Missouri
  • Cornell University
  • Helmholtz Centre Potsdam - German Research Centre for Geosciences
  • Universidad Nacional de Jujuy
  • Universidad de Chile
  • Universidad Nacional de San Juan

Research output: Contribution to journalArticlepeer-review

42 Scopus citations

Abstract

The high elevation of the southern Puna plateau, the widespread melting of its crust, the gap in intermediate depth seismicity and the recent eruptions of ignimbrite complexes can be explained by delamination of the lithospheric mantle beneath it. To test this hypothesis, an array consisting of 73 broad band and short period seismic stations was deployed in the region for a period of 2 years starting in 2007. We inverted the data using the two plane wave approach and obtained 1-D and 3-D Rayleigh wave phase velocities. Our dispersion curve shows that at short periods (<70 s) the phase velocities are slightly higher than those of the Tibetan plateau and lower than those of the Anatolian plateau. At periods of 100-140 s we observe a low velocity zone that might be remnant hot asthenosphere below a flat slab (7-10 Ma). We estimate the average continental lithosphere thickness for the region to be between 100 and 130 km. Our three-dimensional Rayleigh wave phase velocities show a high velocity anomaly at low frequencies (0.007, 0.008, and 0.009 Hz) slightly to the north of Cerro Galan. This would be consistent with the hypothesis of delamination in which a piece of lithosphere has detached and caused upwelling of hot asthenosphere, which in turn caused widespread alkaline-collision related volcanism. This interpretation is also corroborated by our shear wave velocity model, where a high velocity anomaly beneath the northern edge of Cerro Galan at 130 km depth is interpreted as the delaminated block on top of the subducting Nazca slab. Key Points A 3D velocity structure is provided for the Southern Puna Plateau We imaged a delaminated block beneath the Puna plateau Ignimbrite flare up in Cerro Galan Region may not be over

Original languageEnglish
Pages (from-to)4292-4305
Number of pages14
JournalGeochemistry, Geophysics, Geosystems
Volume14
Issue number10
DOIs
StatePublished - Oct 2013

Keywords

  • delamination
  • southern Puna Plateau
  • surface wave tomography

Fingerprint

Dive into the research topics of 'Velocity structure beneath the southern Puna plateau: Evidence for delamination'. Together they form a unique fingerprint.

Cite this