Sp converted waves reveal the structure of the lithosphere below the Alps and their northern foreland

Author:

Kind Rainer12,Schmid Stefan M3,Schneider Felix2,Meier Thomas4,Yuan Xiaohui2,Heit Ben2,Schiffer Christian5,

Affiliation:

1. Deutsches GeoForschungsZentrum GFZ, Section Seismology , 14473 Potsdam , Germany

2. Freie Universität Fachbereich Geowissenschaften, Fachrichtung Geophysik , 12249 Berlin , Germany

3. Eidgenössische Technische Hochschule ETH, Institut für Geophysik , 8006 Zürich , Switzerland

4. Christian-Albrechts-Universität, Institut für Geowissenschaften , 24118 Kiel , Germany

5. Department of Earth Sciences, Uppsala University , 75236 Uppsala , Sweden

Abstract

SUMMARY The structure of the lithosphere is reflecting its evolution. The Moho of the European lithosphere has already been studied intensively. This is, however, not yet the case for the lower boundary of the lithosphere, that is the lithosphere–asthenosphere boundary (LAB). We are using S-to-P converted seismic waves to study the structures of the Moho and the LAB beneath Europe including the greater Alpine Area with data from the AlpArray project and the European networks of permanent seismic stations. We use plain waveform stacking of converted waves without deconvolution and compare the results with stacking of deconvolved traces. We also compare Moho depths determinations using S-to-P converted waves with those obtained by other seismic methods. We present more detailed information about negative velocity gradients (NVG) below the Moho. Its lower bound may be interpreted as representing the LAB. We found that the thickness of the European mantle lithosphere is increasing from about 50°N towards the Alps along the entire east–west extension of the Alps. The NVG has also an east dipping component towards the Pannonian Basin and the Bohemian Massif. The Alps and their northern foreland north of about 50°N are surrounded in the east, west and north by a north dipping mantle lithosphere. Along 50°N, where the NVG is reversing its dip direction towards the north, is also the area along which the volcanoes of the European Cenozoic Rift System are located. Our results possibly indicate that the Alpine collision has deformed the entire lithosphere of the Alpine foreland as far north as about 50°N.

Funder

Deutsche Forschungsgemeinschaft

GeoForschungsZentrum Potsdam

Publisher

Oxford University Press (OUP)

Subject

Geochemistry and Petrology,Geophysics

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