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Lithospheric seismic velocity discontinuities beneath the Arabian Shield

  • Eric Sandvol
  • , Dogan Seber
  • , Muawia Barazangi
  • , Frank Vernon
  • , Robert Mellors
  • , Abdullah Al-Amri
  • Cornell University
  • University of California at San Diego
  • King Saud University

Research output: Contribution to journalArticlepeer-review

81 Scopus citations

Abstract

We determined crustal and lithospheric mantle velocity structure beneath the Arabian Shield through the modeling of receiver function stacks obtained from teleseismic P waves recorded by the 9 station temporary broadband array in western Saudi Arabia. The receiver function deconvolution technique was used to isolate the receiver-side PS mode conversions. A grid search method, which should yield an unbiased global minimum, was used to solve for a shear wave velocity model that is optimal and has the minimum number of layers needed to fit the receiver function waveform. Results from this analysis show that the crustal thickness in the shield area varies from 35 to 40 km in the west, adjacent to the Red Sea, to 45 km in central Arabia. Stability tests of each solution indicate that the models are relatively well constrained. We have also observed evidence for a large positive velocity contrast at sub-Moho depths at four stations at depths of 80 to 100 km. This discontinuity may represent a change in rheology in the lower part of the lithosphere or remnant structure from the formation of the Arabian Shield.

Original languageEnglish
Pages (from-to)2873-2876
Number of pages4
JournalGeophysical Research Letters
Volume25
Issue number15
DOIs
StatePublished - Aug 1 1998

Keywords

  • Arabian Shield
  • Discontinuity
  • Lithospheric structure
  • Saudi Arabia
  • Seismic velocity
  • Velocity structure

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