On September 16, 2015, a magnitude 8.3 earthquake struck west of Illapel, Chile. We analyzed Sentinel-1A/IW InSAR data on the descending track acquired before and after the Chile Mw8.3 earthquake of 16 September 2015. We found that the coseismic deformation field of this event consists of many semi circular fringes protruding to east in an approximately 300km long and 190km wide region. The maximum coseismic displacement is about 1.33m in LOS direction corresponding to subsidence or westward shift of the ground. We inverted the coseismic fault slip based on a small-dip single plane fault model in a homogeneous elastic half space. The inverted coseismic slip mainly concentrates at shallow depth above the hypocenter with a symmetry shape. The...
The Maule earthquake of 27th February 2010 (M-w = 8.8) affected similar to 500 km of the Nazca-South...
Accepted for publication in Earth and Planetary Science Letters. 2017The September 16, 2015 Mw8.3 Il...
International audienceThe September 16, 2015 Mw8.3 Illapel Earthquake occurred on a locked segment o...
International audienceWe analyzed the coseismic and early postseismic deformation of the 2015, Mw 8....
We analyzed the coseismic and early postseismic deformation of the 2015, M-w 8.3 Illapel earthquake ...
We analyzed the coseismic and early postseismic deformation of the 2015, M-w 8.3 Illapel earthquake ...
On 16 September 2015, a Mw 8.3 interplate thrust earthquake ruptured offshore the Illapel region (Ch...
In this study, we present inter-, co- and post-seismic displacements observed in the 2015 Illapel ea...
On 16 September 2015, the M-w 8.3 Illapel, Chile, earthquake broke a large area of the Coquimbo regi...
Artículo de publicación ISIStatic offsets produced by the February 27, 2010 M-w = 8.8 Maule, Chile e...
On 16 September 2015, a Mw 8.3 earthquake ruptured the subduction zone offshore of Illapel, Chile, g...
International audienceThe different phases of the earthquake cycle can produce measurable deformatio...
Great subduction earthquakes are thought to rupture portions of the megathrust, where interseismic c...
Subduction earthquakes have been widely studied in the Chilean subduction zone, but earthquakes occu...
The Maule earthquake of 27th February 2010 (M-w = 8.8) affected similar to 500 km of the Nazca-South...
Accepted for publication in Earth and Planetary Science Letters. 2017The September 16, 2015 Mw8.3 Il...
International audienceThe September 16, 2015 Mw8.3 Illapel Earthquake occurred on a locked segment o...
International audienceWe analyzed the coseismic and early postseismic deformation of the 2015, Mw 8....
We analyzed the coseismic and early postseismic deformation of the 2015, M-w 8.3 Illapel earthquake ...
We analyzed the coseismic and early postseismic deformation of the 2015, M-w 8.3 Illapel earthquake ...
On 16 September 2015, a Mw 8.3 interplate thrust earthquake ruptured offshore the Illapel region (Ch...
In this study, we present inter-, co- and post-seismic displacements observed in the 2015 Illapel ea...
On 16 September 2015, the M-w 8.3 Illapel, Chile, earthquake broke a large area of the Coquimbo regi...
Artículo de publicación ISIStatic offsets produced by the February 27, 2010 M-w = 8.8 Maule, Chile e...
On 16 September 2015, a Mw 8.3 earthquake ruptured the subduction zone offshore of Illapel, Chile, g...
International audienceThe different phases of the earthquake cycle can produce measurable deformatio...
Great subduction earthquakes are thought to rupture portions of the megathrust, where interseismic c...
Subduction earthquakes have been widely studied in the Chilean subduction zone, but earthquakes occu...
The Maule earthquake of 27th February 2010 (M-w = 8.8) affected similar to 500 km of the Nazca-South...
Accepted for publication in Earth and Planetary Science Letters. 2017The September 16, 2015 Mw8.3 Il...
International audienceThe September 16, 2015 Mw8.3 Illapel Earthquake occurred on a locked segment o...