
doi: 10.1002/2016gl071845
AbstractAlong a subduction zone, great megathrust earthquakes recur either after long seismic gaps lasting several decades to centuries or over much shorter periods lasting hours to a few years when cascading successions of earthquakes rupture nearby segments of the fault. We analyze a decade of continuous Global Positioning System observations along the South American continent to estimate changes in deformation rates between the 2010 Maule (M8.8) and 2015 Illapel (M8.3) Chilean earthquakes. We find that surface velocities increased after the 2010 earthquake, in response to continental‐scale viscoelastic mantle relaxation and to regional‐scale increased degree of interplate locking. We propose that increased locking occurs transiently during a super‐interseismic phase in segments adjacent to a megathrust rupture, responding to bending of both plates caused by coseismic slip and subsequent afterslip. Enhanced strain rates during a super‐interseismic phase may therefore bring a megathrust segment closer to failure and possibly triggered the 2015 event.
Earthquake, 550, ddc:550, Megathrust, Institut für Geowissenschaften, Chile, Cycle
Earthquake, 550, ddc:550, Megathrust, Institut für Geowissenschaften, Chile, Cycle
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