4.6 Article

Tectonics and Paleomagnetic Rotation Pattern of Yunnan (24°N-25°N, China): Gaoligong Fault Shear Versus Megablock Drift

Journal

TECTONICS
Volume 37, Issue 5, Pages 1524-1551

Publisher

AMER GEOPHYSICAL UNION
DOI: 10.1029/2017TC004899

Keywords

paleomagnetism; Yunnan; Gaoligong shear zone; strike-slip fault; block rotations

Funding

  1. University of Catania
  2. National Science Foundation of China (NSFC) [41422206]
  3. Piano per la Ricerca

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A wealth of paleomagnetic data from Yunnan (China) showed in the past a predominant post-Cretaceous clockwise (CW) rotation pattern, mostly explained invoking huge (hundreds of kilometer wide) blocks, laterally escaping (and/or rotating) due to India-Asia collision, separated by major strike-slip shear zones. Here we report on the paleomagnetism of the outcrops close to the Gaoligong dextral shear zone. Fifty paleomagnetic sites (503 samples) were sampled at variable distances (up to similar to 25km) from mylonites exposed along the fault. Eighteen Jurassic-Cretaceous red bed sites yield systematic CW rotations with respect to Eurasia that peak at maximum (176 degrees) close to the fault, and progressively decrease moving eastward, up to be virtually annulled similar to 20km east of mylonite contact. West of the fault, 15 Pliocene-Holocene sites from the Tengchong volcanic field do not rotate. Thus, our data show that Gaoligong shear zone activity yielded significant CW rotations that were likely coeval to the main Oligo-Miocene episodes of dextral fault shear. The Gaoligong zone rotation pattern conforms to a quasi-continuous crust kinematic model and shows blocks of 1km size close to the fault that enlarge moving eastward. Rotation values and width of the rotated-deformed zone translate to a 230-290km Gaoligong shear zone dextral offset. Our work shows that fault shear plays a significant role for Indochina CW rotation occurrence. However, significant rotations at distances >30km from main faults were also documented, so that additional tectonicswhose relative relevance has not been elucidated yetmust contribute as well to the rotation pattern.

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