Publications by authors named "Shuoshuo Han"

The origin of rupture segmentation along subduction zone megathrusts and linkages to the structural evolution of the subduction zone are poorly understood. Here, regional-scale seismic imaging of the Cascadia margin is used to characterize the megathrust spanning ~900 km from Vancouver Island to the California border, across the seismogenic zone to a few tens of kilometers from the coast. Discrete domains in lower plate geometry and sediment underthrusting are identified, not evident in prior regional plate models, which align with changes in lithology and structure of the upper plate and interpreted paleo-rupture patches.

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Article Synopsis
  • Recurring slow slip events occur at subduction zones due to fluid overpressures but are not universally observed; the relationship between slow slip and hydrogeology remains unclear.
  • Recent studies at the Hikurangi margin have identified a substantial fluid reservoir within the hydrated volcanic upper crust of the subducting Hikurangi Plateau.
  • The volcaniclastic-rich upper crust retains significant fluid content during subduction, suggesting it plays a crucial role in supplying water that may lead to overpressures along megathrust faults, potentially leading to increased occurrences of shallow slow slip.
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Slow slip events (SSEs) accommodate a significant proportion of tectonic plate motion at subduction zones, yet little is known about the faults that actually host them. The shallow depth (<2 km) of well-documented SSEs at the Hikurangi subduction zone offshore New Zealand offers a unique opportunity to link geophysical imaging of the subduction zone with direct access to incoming material that represents the megathrust fault rocks hosting slow slip. Two recent International Ocean Discovery Program Expeditions sampled this incoming material before it is entrained immediately down-dip along the shallow plate interface.

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