The upper plate of the Arabia-Eurasia collision zone experienced orogen-perpendicular to orogen-parallel extension from 25–22 to 10–9 Ma. Although such an extension occurred during widespread collisional deformation, it is not clear if it is a local feature or if represents a major phase of upper plate extension. In this study we combine anisotropy of magnetic susceptibility (AMS) with fault kinematic analysis and sedimentologic data from 16.2- to 7.6-My-old deposits of the Upper Red Formation of the intermontane Tarom Basin (NW Iran). These strata present syndepositional, normal faults and offer the possibility to gain new insights into the spatial extent of such a Miocene extension. AMS data from the central and northern sectors of the ba...
Sedimentary basins in the interior of orogenic plateaus can provide unique insights into the early h...
International audienceAt Iranian longitude, the Arabian plate is moving northward relative to Eurasi...
The intermontane Tarom Basin of NW Iran (Arabia-Eurasia collision zone) is located at the transition...
The upper plate of the Arabia-Eurasia collision zone experienced orogen-perpendicular to orogen-para...
In this study we use the anisotropy of magnetic susceptibility (AMS) and paleomagnetic data for deci...
The southern Alborz mountains of northern Iran are an integral part of the Arabia/Eurasia collision ...
The intermontane Tarom Basin of NW Iran (Arabia-Eurasia collision zone) is located at the transition...
In this study, an extensive paleomagnetic sampling (70 sites) was carried out in north-eastern Iran ...
A poorly understood lag time of 15-20 m.y. exists between the initial Arabia-Eurasia continental col...
In this study, we report an extensive paleomagnetic study (76 sites) carried out in the Alborz Mts. ...
Regional shortening is accommodated across NE Iran in response to the collision of Arabia with Euras...
Sedimentary basins in the interior of orogenic plateaus can provide unique insights into the early h...
Regional shortening is accommodated across NE Iran in response to the collision of Arabia with Euras...
Sedimentary basins in the interior of orogenic plateaus can provide unique insights into the early h...
International audienceAt Iranian longitude, the Arabian plate is moving northward relative to Eurasi...
The intermontane Tarom Basin of NW Iran (Arabia-Eurasia collision zone) is located at the transition...
The upper plate of the Arabia-Eurasia collision zone experienced orogen-perpendicular to orogen-para...
In this study we use the anisotropy of magnetic susceptibility (AMS) and paleomagnetic data for deci...
The southern Alborz mountains of northern Iran are an integral part of the Arabia/Eurasia collision ...
The intermontane Tarom Basin of NW Iran (Arabia-Eurasia collision zone) is located at the transition...
In this study, an extensive paleomagnetic sampling (70 sites) was carried out in north-eastern Iran ...
A poorly understood lag time of 15-20 m.y. exists between the initial Arabia-Eurasia continental col...
In this study, we report an extensive paleomagnetic study (76 sites) carried out in the Alborz Mts. ...
Regional shortening is accommodated across NE Iran in response to the collision of Arabia with Euras...
Sedimentary basins in the interior of orogenic plateaus can provide unique insights into the early h...
Regional shortening is accommodated across NE Iran in response to the collision of Arabia with Euras...
Sedimentary basins in the interior of orogenic plateaus can provide unique insights into the early h...
International audienceAt Iranian longitude, the Arabian plate is moving northward relative to Eurasi...
The intermontane Tarom Basin of NW Iran (Arabia-Eurasia collision zone) is located at the transition...