Ultra‐Low Velocity Zones Beneath the Southern Hemisphere Imaged With Double‐Array Stacking of PcP Waveforms

Author:

Agboola Kayode J.12ORCID,Hansen Samantha E.1ORCID,Garnero Edward J.3ORCID,Rost Sebastian4ORCID,Li Mingming3ORCID,Shim Sang‐Heon3ORCID

Affiliation:

1. Department of Geological Sciences The University of Alabama Tuscaloosa AL USA

2. Now at Cornell University Ithaca NY USA

3. School of Earth and Space Exploration Arizona State University Tempe AZ USA

4. School of Earth and Environment The University of Leeds Leeds UK

Abstract

AbstractUltra‐low velocity zones (ULVZs) are anomalous structures, generally associated with decreased seismic velocity and sometimes an increase in density, that have been detected in some locations atop the Earth's core‐mantle boundary (CMB). A wide range of ULVZ characteristics have been reported by previous studies, leading to many questions regarding their origins. The lowermost mantle beneath Antarctica and surrounding areas is not located near currently active regions of mantle upwelling or downwelling, making it a unique environment in which to study the sources of ULVZs; however, seismic sampling of this portion of the CMB has been sparse. Here, we examine core‐reflected PcP waveforms recorded by seismic stations across Antarctica using a double‐array stacking technique to further elucidate ULVZ structure beneath the southern hemisphere. Our results show widespread, variable ULVZs, some of which can be robustly modeled with 1‐D synthetics; however, others are more complex, which may reflect 2‐D or 3‐D ULVZ structure and/or ULVZs with internal velocity variability. Our findings are consistent with the concept that ULVZs can be largely explained by variable accumulations of subducted oceanic crust along the CMB. Partial melting of subducted crust and other, hydrous subducted materials may also contribute to ULVZ variability.

Funder

National Science Foundation

Natural Environment Research Council

Publisher

American Geophysical Union (AGU)

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