How P‐Wave Scattering Throughout the Entire Mantle Mimics the High‐Frequency Pdiff and Its Coda

Author:

Zhang Tuo12ORCID,Sens‐Schönfelder Christoph2ORCID,Bianchi Marcelo3ORCID,Bataille Klaus4

Affiliation:

1. College of Geophysics Chengdu University of Technology Chengdu China

2. Section 2.4, Deutsches GeoForschungsZentrum GFZ Potsdam Germany

3. Instituto de Astronomia Geofísica e Ciências Atmosféricas Universidade de São Paulo São Paulo Brazil

4. Earth Sciences Department University of Concepción Concepción Chile

Abstract

AbstractWe document the arrival of seismic energy in the core shadow zone up to large distances beyond 150° more than 100 s prior to the core phases. Numerical simulations of the energy transport in an established heterogeneity model show that scattering throughout the entire mantle explains these observations. Diffraction at the core‐mantle boundary is unlikely in our 1–2 Hz frequency band and is not required indicating misleading terminology with reference to Pdiff for the scattered PP‐energy. Records of the largest deep earthquakes at low‐noise stations are key to the observation of the faint precursory signal which changes appearance with increasing distance from a coda‐like decay over a constant amplitude level around 130° to an emergent wave train. According to our simulations, different depth layers in the mantle dominate different time‐distance windows of the scattered wave train, providing the opportunity to improve the depth resolution of mantle heterogeneity models.

Funder

National Natural Science Foundation of China

Publisher

American Geophysical Union (AGU)

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