Title of article
Oceanic-style subduction controls late Cenozoic deformation of the Northern Pamir orogen
Author/Authors
Sobel، نويسنده , , Edward R. and Chen، نويسنده , , Jie and Schoenbohm، نويسنده , , Lindsay M. and Thiede، نويسنده , , Rasmus and Stockli، نويسنده , , Daniel F. and Sudo، نويسنده , , Masafumi and Strecker، نويسنده , , Manfred R.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2013
Pages
15
From page
204
To page
218
Abstract
The northern part of the Pamir orogen is the preeminent example of an active intracontinental subduction zone in the early stages of continent–continent collision. Such zones are the least understood type of plate boundaries because modern examples are few and of limited access, and ancient analogs have been extensively overprinted by subsequent tectonic and erosion processes. In the Pamir, it has been assumed that most of the plate convergence was accommodated by overthrusting along the plate-bounding Main Pamir Thrust (MPT), which forms the principal northern mountain and deformation front of the Pamir. However, the synopsis of our new and previously published thermochronologic data from this region shows that the hanging wall of the MPT experienced relatively minor amounts of late Cenozoic exhumation. The Pamir orogen as a whole is an integral part of the overriding plate in a subduction system, while the remnant basin to the north constitutes the downgoing plate, with the bulk of the convergence accommodated by underthrusting. Herein, we demonstrate that the observed deformation of the upper and lower plates within the Pamir–Alai convergence zone resembles highly arcuate oceanic subduction systems characterized by slab rollback, subduction erosion, subduction accretion, and marginal slab-tear faults. We suggest that the curvature of the North Pamir is genetically linked to the short width and rollback of the south-dipping Alai slab; northward motion (indentation) of the Pamir is accommodated by crustal processes related to this rollback. The onset of south-dipping subduction is tentatively linked to intense Pamir contraction following break-off of the north-dipping Indian slab beneath the Karakoram.
Keywords
Subduction accretion , exhumation , thermochronology , intracontinental deformation , Subduction erosion , Pamir
Journal title
Earth and Planetary Science Letters
Serial Year
2013
Journal title
Earth and Planetary Science Letters
Record number
2331443
Link To Document