Global anisotropic phase velocity maps for fundamental mode surface waves between 40 and 150 s

We constructed global phase velocity maps including azimuthal anisotropy. Azimuthal anisotropy is expanded on a basis of generalized spherical harmonics, which makes the calculation of path integrals of the phase velocity particularly simple. It is generally accepted that the major difficulty in suc...

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Main Authors: Trampert, J, Woodhouse, J
Format: Journal article
Language:English
Published: 2003
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author Trampert, J
Woodhouse, J
author_facet Trampert, J
Woodhouse, J
author_sort Trampert, J
collection OXFORD
description We constructed global phase velocity maps including azimuthal anisotropy. Azimuthal anisotropy is expanded on a basis of generalized spherical harmonics, which makes the calculation of path integrals of the phase velocity particularly simple. It is generally accepted that the major difficulty in such modelling is determining the strength of the anisotropy relative to the isotropy. We propose a technique which finds the optimum relative weighting of the anisotropic terms prior to inversion. It is clear from our analyses that phase data require azimuthal anisotropy. We further find that Love wave data do not require a 2Ψ term, whereas Rayleigh wave data need 2Ψ and 4Ψ terms. The main effect of azimuthal anisotropy upon the isotropic maps is a loss of power in the highest spherical harmonic degrees, resulting in an overall lower lateral resolution compared with a purely isotropic inversion for the same number of recovered parameters. The correlation of 2Ψ and 4Ψ components at different periods is relatively high, indicating a shallow source for the azimuthal anisotropy. Overall, fast 2Ψ Rayleigh directions agree well with absolute plate motions in the hotspot reference frame.
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spelling oxford-uuid:713d99f2-55ce-43bc-bd2c-6b5990f4133b2022-03-26T19:42:16ZGlobal anisotropic phase velocity maps for fundamental mode surface waves between 40 and 150 sJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:713d99f2-55ce-43bc-bd2c-6b5990f4133bEnglishSymplectic Elements at Oxford2003Trampert, JWoodhouse, JWe constructed global phase velocity maps including azimuthal anisotropy. Azimuthal anisotropy is expanded on a basis of generalized spherical harmonics, which makes the calculation of path integrals of the phase velocity particularly simple. It is generally accepted that the major difficulty in such modelling is determining the strength of the anisotropy relative to the isotropy. We propose a technique which finds the optimum relative weighting of the anisotropic terms prior to inversion. It is clear from our analyses that phase data require azimuthal anisotropy. We further find that Love wave data do not require a 2Ψ term, whereas Rayleigh wave data need 2Ψ and 4Ψ terms. The main effect of azimuthal anisotropy upon the isotropic maps is a loss of power in the highest spherical harmonic degrees, resulting in an overall lower lateral resolution compared with a purely isotropic inversion for the same number of recovered parameters. The correlation of 2Ψ and 4Ψ components at different periods is relatively high, indicating a shallow source for the azimuthal anisotropy. Overall, fast 2Ψ Rayleigh directions agree well with absolute plate motions in the hotspot reference frame.
spellingShingle Trampert, J
Woodhouse, J
Global anisotropic phase velocity maps for fundamental mode surface waves between 40 and 150 s
title Global anisotropic phase velocity maps for fundamental mode surface waves between 40 and 150 s
title_full Global anisotropic phase velocity maps for fundamental mode surface waves between 40 and 150 s
title_fullStr Global anisotropic phase velocity maps for fundamental mode surface waves between 40 and 150 s
title_full_unstemmed Global anisotropic phase velocity maps for fundamental mode surface waves between 40 and 150 s
title_short Global anisotropic phase velocity maps for fundamental mode surface waves between 40 and 150 s
title_sort global anisotropic phase velocity maps for fundamental mode surface waves between 40 and 150 s
work_keys_str_mv AT trampertj globalanisotropicphasevelocitymapsforfundamentalmodesurfacewavesbetween40and150s
AT woodhousej globalanisotropicphasevelocitymapsforfundamentalmodesurfacewavesbetween40and150s