Publication | Closed Access
Robust Normal Mode Constraints on Inner-Core Anisotropy from Model Space Search
138
Citations
33
References
2003
Year
Numerical AnalysisEngineeringVariational AnalysisConstrained OptimizationComputational MechanicsEnergy MinimizationGeophysicsFull Model SpaceMagnetohydrodynamicsModel Space SearchRegularization (Mathematics)Anisotropic MaterialGeodesyPhysicsWave PropagationInverse ProblemsSynchrotron RadiationMagnetarAstrophysicsNormal ModesNatural SciencesInner CoreInner-core AnisotropyMultiscale Modeling
A technique for searching full model space that was applied to measurements of anomalously split normal modes showed a robust pattern of P-wave and S-wave anisotropy in the inner core. The parameter describing P-wave anisotropy changes sign around a radius of 400 kilometers, whereas S-wave anisotropy is small in the upper two-thirds of the inner core and becomes negative at greater depths. Our results agree with observed travel-time anomalies of rays traveling at epicentral distances varying from 150 degrees to 180 degrees. The models may be explained by progressively tilted hexagonal close-packed iron in the upper half of the inner core and could suggest a different iron phase in the center.
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