Geochronology, Geochemistry, and Geodynamic Implications of Permo-Triassic Back-Arc Basin Successions in the North Pamir, Central Asia

Author:

Rembe Johannes1ORCID,Sobel Edward R.1ORCID,Kley Jonas2ORCID,Terbishalieva Baiansulu3ORCID,Musiol Antje1ORCID,Chen Jie4ORCID,Zhou Renjie5ORCID

Affiliation:

1. 1 Institute of Geosciences University of Potsdam 14476 Potsdam Germany uni-potsdam.de

2. 2 Department of Structural Geology and Geodynamics Georg-August-Universität Göttingen 37077 Göttingen Germany uni-goettingen.de

3. 3 Institute of Geology National Academy of Sciences of the Kyrgyz Republic Laboratory of Metamorphic Formations Erkindik Avenue-30 Bishkek 720481 Kyrgyzstan naskr.kg

4. 4 State Key Laboratory of Earthquake Dynamics Xinjiang Pamir Intracontinental Subduction National Field Observation and Research Station Institute of Geology China Earthquake Administration Chaoyang 100029 Beijing China cea.gov.cn

5. 5 School of Earth and Environmental Sciences The University of Queensland St. Lucia QLD 4072 Australia uq.edu.au

Abstract

Abstract The Permo-Triassic period marks the time interval between Hercynian (Variscan) orogenic events in the Tien Shan and the North Pamir, and the Cimmerian accretion of the Gondwana-derived Central and South Pamir to the southern margin of the Paleo-Asian continent. A well-preserved Permo-Triassic volcano-sedimentary sequence from the Chinese North Pamir yields important information on the geodynamic evolution of Asia’s pre-Cimmerian southern margin. The oldest volcanic rocks from that section are dated to the late Guadalupian epoch by a rhyolite and a dacitic dike that gave zircon U-Pb ages of ~260 Ma. Permian volcanism was largely pyroclastic and mafic to intermediate. Upsection, a massive ignimbritic crystal tuff in the Chinese Qimgan valley was dated to 244.1±1.1 Ma, a similar unit in the nearby Gez valley to 245±11 Ma, and an associated rhyolite to 233.4±1.1 Ma. Deposition of the locally ~200 m thick crystal tuff unit follows an unconformity and marks the onset of intense, mainly mafic to intermediate, calc-alkaline magmatic activity. Triassic volcanic activity in the North Pamir was coeval with the major phase of Cimmerian intrusive activity in the Karakul-Mazar arc-accretionary complex to the south, caused by northward subduction of the Paleo-Tethys. It also coincided with the emplacement of basanitic and carbonatitic dikes and a thermal event in the South Tien Shan, to the north of our study area. Evidence for arc-related magmatic activity in a back-arc position provides strong arguments for back-arc extension or transtension and basin formation. This puts the Qimgan succession in line with a more than 1000 km long realm of extensional Triassic back-arc basins known from the North Pamir in the Kyrgyz Altyn Darya valley (Myntekin formation), the North Pamir of Tajikistan and Afghanistan, and the Afghan Hindukush (Doab formation) and further west from the Paropamisus and Kopet Dag (Aghdarband, NE Iran).

Funder

Deutscher Akademischer Austauschdienst

Deutsche Forschungsgemeinschaft

Publisher

GeoScienceWorld

Subject

Geology

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