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doi: 10.1038/srep18416
pmid: 26674394
pmc: PMC4682081
handle: 20.500.14352/24323 , 10261/127315 , 1885/153671
doi: 10.1038/srep18416
pmid: 26674394
pmc: PMC4682081
handle: 20.500.14352/24323 , 10261/127315 , 1885/153671
AbstractThe core mantle boundary (CMB) separates Earth’s liquid iron outer core from the solid but slowly convecting mantle. The detailed structure and dynamics of the mantle within ~300 km of this interface remain enigmatic: it is a complex region, which exhibits thermal, compositional and phase-related heterogeneity, isolated pockets of partial melt and strong variations in seismic velocity and anisotropy. Nonetheless, characterising the structure of this region is crucial to a better understanding of the mantle’s thermo-chemical evolution and the nature of core-mantle interactions. In this study, we examine the heterogeneity spectrum from a recent P-wave tomographic model, which is based upon trans-dimensional and hierarchical Bayesian imaging. Our tomographic technique avoids explicit model parameterization, smoothing and damping. Spectral analyses reveal a multi-scale wavelength content and a power of heterogeneity that is three times larger than previous estimates. Inter alia, the resulting heterogeneity spectrum gives a more complete picture of the lowermost mantle and provides a bridge between the long-wavelength features obtained in global S-wave models and the short-scale dimensions of seismic scatterers. The evidence that we present for strong, multi-scale lowermost mantle heterogeneity has important implications for the nature of lower mantle dynamics and prescribes complex boundary conditions for Earth’s geodynamo.
550, Inner-core, Boundary, Meteorología, Meteorología (Física), 2507 Geofísica, Pkp, Geofísica, Article, Scale, Earth's mantle, Geophysics, Models, Travel-times, Constraints, Deep mantle, Manto terrestre, 550.3, Tomography, Seismology, D''
550, Inner-core, Boundary, Meteorología, Meteorología (Física), 2507 Geofísica, Pkp, Geofísica, Article, Scale, Earth's mantle, Geophysics, Models, Travel-times, Constraints, Deep mantle, Manto terrestre, 550.3, Tomography, Seismology, D''
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