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Velocity dispersion due to anelasticity; implications for seismology and mantle composition

Geophysical Journal International · 1976 · Vol. 47(1) · pp. 41–58
Hsi‐Ping LiuD. L. AndersonHiroo Kanamori

Abstract

The concept of a relaxation spectrum is used to compute the absorption and dispersion of a linear anelastic solid. The Boltzmann after-effect equation is solved for a solid having a linear relationship between stress and strain and their first time derivatives, the ‘standard linear solid’, and having a distribution of relaxation times. The distribution function is chosen to give a nearly constant Q over the seismic frequency range. Both discrete and continuous relaxation spectra are considered. The resulting linear solid has a broad absorption band which can be interpreted in terms of a superposition of absorption peaks of individual relaxation mechanisms. 
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\nThe accompanying phase and group velocity dispersion imply that one cannot directly compare body wave, surface wave, and free oscillation data or laboratory and seismic data without correcting for absorption. The necessary formalism for making these corrections is given. In the constant Q regions the correction is the same as that implied in the theories of Futterman, Lomnitz, Strick and Kolsky.

High-pressure geophysics and materialsSeismic Imaging and Inversion TechniquesSeismic Waves and AnalysisSuperposition principleDispersion (optics)Relaxation (psychology)Velocity dispersionMantle (geology)Distribution functionSeismic wavePhysicsStress relaxationGeophysics
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References
Elasticity and Anelasticity of Metals.
The Journal of Physical Chemistry · 1949 · 2,344 citations
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