Inhaltsbereich
Publications
Abstract (EDOC: 18355)
We present a series of 1-D shear velocity models for the Sumatran Forearc and Arc derived
from Rayleigh wave group dispersion in noise correlation functions from vertical and pressure
records from an onshore–offshore seismic deployment. The 1-D models represent the
crustal structure of the downgoing Indian Plate, the accretionary prism and the arc. There is
a progression in shear velocity across the forearc to the arc associated with thickening of the
accretionary prism and the development of an arc crust. The velocity structure inferred for the
upper 20 km based on path averages between stations on the accretionary prism has velocities
consistent with a thick sediment package in agreement with estimates of depth to the plate
boundary determined from active source experiments. We also find low Indian Plate shear
velocities, <4 km s−1 to 25 km depth beneath our station locations on the downgoing plate.
These low seismic velocities are consistent with at least 14–24 per cent serpentinization of the
oceanic crust and upper mantle of the downgoing plate. This high degree of serpentinization,
may weaken the plate interface and explain the segmentation observed in the great Sumatran
thrust earthquakes if the serpentinization is localized. The success of this study suggests that
future onshore–offshore seismic deployments will be able to utilize this method.
(2012): Shear velocity structure across the Sumatran Forearc-Arc. Geophysical Journal International, 189, 3, 1306-1314.
(2012): Shear velocity structure across the Sumatran Forearc-Arc. Geophysical Journal International, 189, 3, 1306-1314.

