HR: 1340h
AN: T13A-0439 [Abstracts]
TI: Anisotropic Seismic Structure Beneath Cratons From Interstation Surface-Wave Dispersion Measurements on
GSN and Geofon Data
AU: Boonen, J
EM: boonen@geo.uu.nl
AF: Utrecht University,
Earth Sciences, Budapestlaan 4, Utrecht, 3584 CD
Netherlands
AU: * Lebedev, S
EM: sergei@geo.uu.nl
AF: Utrecht University,
Earth Sciences, Budapestlaan 4, Utrecht, 3584 CD
Netherlands
AB:
Seismic structure of stable continental lithosphere offers insight into
the origin and evolution of the tectosphere. The structure is still
poorly known, especially its anisotropic components.
Measurements of interstation dispersion of Rayleigh and Love surface waves
can produce accurate, radially anisotropic S-velocity profiles that average
between pairs of stations. A recently proposed (Lebedev and Meier, 2005)
combination of station-station cross-correlation and event-station multimode
waveform inversion allows to maximize the frequency band of the measured
dispersion curves and yields improved structural constraints.
With a view to applying the new method to large global data sets, here
we make the measurements using all pairs of GSN and Geofon stations that are
situated on stable continents and separated by sufficiently short interstation
distances. If the distance between the two stations exceeds about 1000 km
then it is difficult to make measurements at shorter periods---below
20 s or so---and trade-offs between the crustal and mantle structure
cannot be resolved: in particular, nothing can be concluded on the nature or
even the presence of radial anisotropy in the mantle. Limiting the scope
of the study to station pairs separated by a few hundred kilometers,
we make dispersion measurements using all suitably situated events and select
a few pairs---all within stable tectonic blocks in Eurasia---for which
broad-band dispersion curves are constrained with large amounts of data.
Inverting the curves for S-velocity profiles, we find that the magnitudes
of both the isotropic high-velocity anomaly and radial anisotropy in the
mantle lithosphere vary strongly from one location to another. When radial
anisotropy is present, it is with SH waves being faster than SV waves.
We shall discuss the anisotropic seismic structures in the context of
regional tectonic settings.
DE: 7218 Lithosphere (1236)
DE: 7255 Surface waves and free oscillations
DE: 8103 Continental cratons
SC: Tectonophysics [T]
MN: Fall Meeting 2005