Buoyancy forces associated with subducting lithosphere control the dynamics of convergent margins. In the postcollisional stage these forces are significantly reduced, yet mountain building and seismicity are ongoing, albeit at lower rates. We leverage advances of a newly developed seismo‐thermo‐mechanical modeling approach to simulate tectonic and seismicity processes in a self‐driven subduction and continental collision setting. We demonstrate that the rearrangement of forces due to slab breakoff, in the postcollisional stage, causes bending and rollback of the residual slab, suction forces, and mantle traction at the base of the upper plate, while stress coupling transfers to the shallow crust. Our results provide an explanation for the ...
Alpine-type mountain ranges emerge from the collision of two continental plates. During the collisio...
The crustal structures of overriding plates in subduction settings around the world can vary between...
Slab breakoff is the buoyancy-driven detachment of subducted oceanic lithosphere from the light cont...
Buoyancy forces associated with subducting lithosphere control the dynamics of convergent margins. I...
Buoyancy forces associated with subducting lithosphere control the dynamics of convergent margins. I...
Buoyancy forces associated with subducting lithosphere control the dynamics of convergent margins. I...
Buoyancy forces associated with subducting lithosphere control the dynamics of convergent margins. I...
Buoyancy forces associated with subducting lithosphere control the dynamics of convergent margins. I...
When continents collide, the arrival of positively buoyant continental crust slows down subduction. ...
When continents collide, the arrival of positively buoyant continental crust slows down subduction. ...
When continents collide, the arrival of positively buoyant continental crust slows down subduction. ...
The construction of the European Alps and the Himalayas has been related to the convergence and subs...
When continents collide, the arrival of positively buoyant continental crust slows down subduction. ...
The crustal-scale geometry of the European Alps has been explained by a classical subduction-scenari...
Slab breakoff is the buoyancy-driven detachment of subducted oceanic lithosphere from the light cont...
Alpine-type mountain ranges emerge from the collision of two continental plates. During the collisio...
The crustal structures of overriding plates in subduction settings around the world can vary between...
Slab breakoff is the buoyancy-driven detachment of subducted oceanic lithosphere from the light cont...
Buoyancy forces associated with subducting lithosphere control the dynamics of convergent margins. I...
Buoyancy forces associated with subducting lithosphere control the dynamics of convergent margins. I...
Buoyancy forces associated with subducting lithosphere control the dynamics of convergent margins. I...
Buoyancy forces associated with subducting lithosphere control the dynamics of convergent margins. I...
Buoyancy forces associated with subducting lithosphere control the dynamics of convergent margins. I...
When continents collide, the arrival of positively buoyant continental crust slows down subduction. ...
When continents collide, the arrival of positively buoyant continental crust slows down subduction. ...
When continents collide, the arrival of positively buoyant continental crust slows down subduction. ...
The construction of the European Alps and the Himalayas has been related to the convergence and subs...
When continents collide, the arrival of positively buoyant continental crust slows down subduction. ...
The crustal-scale geometry of the European Alps has been explained by a classical subduction-scenari...
Slab breakoff is the buoyancy-driven detachment of subducted oceanic lithosphere from the light cont...
Alpine-type mountain ranges emerge from the collision of two continental plates. During the collisio...
The crustal structures of overriding plates in subduction settings around the world can vary between...
Slab breakoff is the buoyancy-driven detachment of subducted oceanic lithosphere from the light cont...