P-velocity structure of the core-mantle boundary region inferred from PKP(AB)-PKP(BC) differential travel times

PKP(AB)‐PKP(BC) differential travel time residuals from the bulletins of the International Seismological Centre are inverted to retrieve the P‐velocity anomalies in the lowermost 300 km of the mantle. We show that a realistic core‐mantle boundary (CMB) topography may have only a marginal contributio...

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Published inGeophysical research letters Vol. 23; no. 8; pp. 853 - 856
Main Authors Sylvander, Matthieu, Souriau, Annie
Format Journal Article
LanguageEnglish
Published Washington, DC Blackwell Publishing Ltd 15.04.1996
American Geophysical Union
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Abstract PKP(AB)‐PKP(BC) differential travel time residuals from the bulletins of the International Seismological Centre are inverted to retrieve the P‐velocity anomalies in the lowermost 300 km of the mantle. We show that a realistic core‐mantle boundary (CMB) topography may have only a marginal contribution to the residuals. The block parametrization used allows us to discard poorly sampled areas prior to a least‐squares inversion. The main features are negative anomalies beneath Eurasia and North America and a positive anomaly beneath the Southwest Pacific. The inferred map is not consistent with other maps resulting from previous P‐ and S‐velocity studies, which are correlated at long wavelengths with each other. The preferred explanation for this challenging inconsistency is the presence of a thin heterogeneous layer just above the CMB.
AbstractList PKP(AB)‐PKP(BC) differential travel time residuals from the bulletins of the International Seismological Centre are inverted to retrieve the P‐velocity anomalies in the lowermost 300 km of the mantle. We show that a realistic core‐mantle boundary (CMB) topography may have only a marginal contribution to the residuals. The block parametrization used allows us to discard poorly sampled areas prior to a least‐squares inversion. The main features are negative anomalies beneath Eurasia and North America and a positive anomaly beneath the Southwest Pacific. The inferred map is not consistent with other maps resulting from previous P‐ and S‐velocity studies, which are correlated at long wavelengths with each other. The preferred explanation for this challenging inconsistency is the presence of a thin heterogeneous layer just above the CMB.
Author Sylvander, Matthieu
Souriau, Annie
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Issue 8
Keywords least-squares analysis
Southwest Pacific
inverse problem
lower mantle
velocity structure
seismology
topography
P-waves
S-waves
anomalies
core-mantle boundary
heterogeneity
PKP-waves
traveltime
Language English
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American Geophysical Union
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Snippet PKP(AB)‐PKP(BC) differential travel time residuals from the bulletins of the International Seismological Centre are inverted to retrieve the P‐velocity...
PKP(AB)-PKP(BC) differential travel time residuals from the bulletins of the International Seismological Centre are inverted to retrieve the P-velocity...
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SubjectTerms Anomalies
Blocking
Core-mantle boundary
Earth sciences
Earth, ocean, space
Earthquakes, seismology
Exact sciences and technology
Internal geophysics
Least squares method
Seismic phenomena
Solid-earth geophysics, tectonophysics, gravimetry
Thin films
Topography
Wavelengths
Title P-velocity structure of the core-mantle boundary region inferred from PKP(AB)-PKP(BC) differential travel times
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https://onlinelibrary.wiley.com/doi/abs/10.1029%2F96GL00586
https://search.proquest.com/docview/1524417318
https://search.proquest.com/docview/1642305822
Volume 23
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