The Hikurangi subduction zone is capable of producing moderate to large earthquakes as well as regularly repeating slow slip events. However, it is unclear what structures host these different slip styles along the margin. Here we address whether splay faults can host seismic slip at shallow (1 m as observed in the 1947 Poverty and Tolaga Bay earthquakes
Slow slip events (SSEs) accommodate a significant proportion of tectonic plate motion at subduction ...
Slow slip events (SSEs) accommodate a significant proportion of tectonic plate motion at subduction ...
Slow slip events (SSEs) accommodate a significant proportion of tectonic plate motion at subduction ...
The Hikurangi subduction zone is capable of producing moderate to large earthquakes as well as regul...
The Hikurangi subduction zone is capable of producing moderate to large earthquakes as well as regul...
The Hikurangi subduction zone is capable of producing moderate to large earthquakes as well as regul...
Geophysical observations show spatial and temporal variations in fault slip style on shallow subduct...
Geophysical observations show spatial and temporal variations in fault slip style on shallow subduct...
Geophysical observations show spatial and temporal variations in fault slip style on shallow subduct...
Geophysical observations show spatial and temporal variations in fault slip style on shallow subduct...
Geophysical observations show spatial and temporal variations in fault slip style on shallow subduct...
Pre-stack depth migration data across the Hikurangi margin, East Coast of the North Island, New Zeal...
Slow slip events are well documented in global subduction zones at depths of 30-50 km. Tectoni...
Slow slip events are well documented in global subduction zones at depths of 30–50 km. Tectonic (non...
Slow slip events (SSEs) accommodate a significant proportion of tectonic plate motion at subduction ...
Slow slip events (SSEs) accommodate a significant proportion of tectonic plate motion at subduction ...
Slow slip events (SSEs) accommodate a significant proportion of tectonic plate motion at subduction ...
Slow slip events (SSEs) accommodate a significant proportion of tectonic plate motion at subduction ...
The Hikurangi subduction zone is capable of producing moderate to large earthquakes as well as regul...
The Hikurangi subduction zone is capable of producing moderate to large earthquakes as well as regul...
The Hikurangi subduction zone is capable of producing moderate to large earthquakes as well as regul...
Geophysical observations show spatial and temporal variations in fault slip style on shallow subduct...
Geophysical observations show spatial and temporal variations in fault slip style on shallow subduct...
Geophysical observations show spatial and temporal variations in fault slip style on shallow subduct...
Geophysical observations show spatial and temporal variations in fault slip style on shallow subduct...
Geophysical observations show spatial and temporal variations in fault slip style on shallow subduct...
Pre-stack depth migration data across the Hikurangi margin, East Coast of the North Island, New Zeal...
Slow slip events are well documented in global subduction zones at depths of 30-50 km. Tectoni...
Slow slip events are well documented in global subduction zones at depths of 30–50 km. Tectonic (non...
Slow slip events (SSEs) accommodate a significant proportion of tectonic plate motion at subduction ...
Slow slip events (SSEs) accommodate a significant proportion of tectonic plate motion at subduction ...
Slow slip events (SSEs) accommodate a significant proportion of tectonic plate motion at subduction ...
Slow slip events (SSEs) accommodate a significant proportion of tectonic plate motion at subduction ...