Subducting volcaniclastic-rich upper crust supplies fluids for shallow megathrust and slow slip

Author:

Gase Andrew C.1ORCID,Bangs Nathan L.1ORCID,Saffer Demian M.1ORCID,Han Shuoshuo1ORCID,Miller Peter K.1ORCID,Bell Rebecca E.2ORCID,Arai Ryuta3ORCID,Henrys Stuart A.4ORCID,Kodaira Shuichi3ORCID,Davy Richard2ORCID,Frahm Laura2ORCID,Barker Daniel H. N.4ORCID

Affiliation:

1. Institute for Geophysics, Jackson School of Geosciences, University of Texas at Austin, Austin, TX, USA.

2. Department of Earth Science and Engineering, Imperial College London, London, UK.

3. Research Institute for Marine Geodynamics, Japan Agency for Marine-Earth Science and Technology, Yokohama, Japan.

4. GNS Science, Lower Hutt, New Zealand.

Abstract

Recurring slow slip along near-trench megathrust faults occurs at many subduction zones, but for unknown reasons, this process is not universal. Fluid overpressures are implicated in encouraging slow slip; however, links between slow slip, fluid content, and hydrogeology remain poorly known in natural systems. Three-dimensional seismic imaging and ocean drilling at the Hikurangi margin reveal a widespread and previously unknown fluid reservoir within the extensively hydrated (up to 47 vol % H 2 O) volcanic upper crust of the subducting Hikurangi Plateau large igneous province. This ~1.5 km thick volcaniclastic upper crust readily dewaters with subduction but retains half of its fluid content upon reaching regions with well-characterized slow slip. We suggest that volcaniclastic-rich upper crust at volcanic plateaus and seamounts is a major source of water that contributes to the fluid budget in subduction zones and may drive fluid overpressures along the megathrust that give rise to frequent shallow slow slip.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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