Retrieval of source-extent parameters and the interpretation of corner frequency
- 1 December 1983
- journal article
- Published by Seismological Society of America (SSA) in Bulletin of the Seismological Society of America
- Vol. 73 (6A) , 1499-1511
- https://doi.org/10.1785/bssa07306a1499
Abstract
A method is proposed for retrieving source-extent parameters from far-field body-wave data. At low frequency, the normalized P- or S-wave displacement amplitude spectrum can be approximated by |Ω^(r^,ω)| = 1 − τ2(r^)ω2/2 where r^ specifies a point on the focal sphere. For planar dislocation sources, τ2(r^) is linearly related to statistical measures of source dimension, source duration, and directivity. τ2(r^) can be measured as the curvature of |Ω^(r^,ω)| at ω = 0 or the variance of the pulse Ω^(r^,t). The quantity ωc=2τ−1(r^) is contrasted with the traditional corner frequency ω0, defined as the frequency at the intersection of the low- and high-frequency trends of |Ω^(r^,ω)|. For dislocation models without directivity, ωc(P) ≧ ωc(S) for any r^. A mean corner frequency defined by averaging τ2(r^) over the focal sphere, ω¯c=2<τ2(r^)>−1/2, satisfies ωc(P) > ωc(S) for any dislocation source. This behavior is not shared by ω0. It is shown that ω0 is most sensitive to critical times in the rupture history of the source, whereas ωc is determined by the basic parameters of source extent. Evidence is presented that ωc is the corner frequency measured on actual seismograms. Thus, the commonly observed corner frequency shift (P-wave corner greater than the S-wave corner), now viewed as a shift in ωc is simply a result of spatial finiteness and is expected to be a property of any dislocation source. As a result, the shift cannot be used as a criterion for rejecting particular dislocation models.Keywords
This publication has 22 references indexed in Scilit:
- Can One Determine Seismic Focal Parameters from the Far-Field Radiation?Geophysical Journal of the Royal Astronomical Society, 2007
- Total‐moment spectra of fourteen large earthquakesJournal of Geophysical Research, 1983
- Seismic source spectra and moment tensorsPhysics of the Earth and Planetary Interiors, 1982
- Optimal estimation of scalar seismic momentGeophysical Journal of the Royal Astronomical Society, 1982
- High-frequency radiation from crack (stress drop) models of earthquake faultingGeophysical Journal International, 1977
- Seismic sources with observable glut moments of spatial degree twoGeophysical Journal International, 1977
- Interpreting the seismic glut moments of total degree two or lessGeophysical Journal International, 1977
- Moment tensors and other phenomenological descriptions of seismic sources--II. Discontinuous displacementsGeophysical Journal International, 1976
- Moment Tensors and other Phenomenological Descriptions of Seismic Sources--I. Continuous DisplacementsGeophysical Journal International, 1976
- Body wave spectra from propagating shear cracks.Journal of Physics of the Earth, 1973