The Spongtang Massif in Ladakh, NW Himalaya: An Early Cretaceous record of spontaneous, intra-oceanic subduction initiation in the Neotethys

被引:56
作者
Buckman, Solomon [1 ]
Aitchison, Jonathan C. [2 ]
Nutman, Allen P. [1 ]
Bennett, Vickie C. [3 ]
Saktura, Wanchese M. [1 ]
Walsh, Jessica M. J. [1 ]
Kachovich, Sarah [2 ]
Hidaka, Hiroshi [4 ]
机构
[1] Univ Wollongong, Sch Earth & Environm Sci, GeoQuEST Res Ctr, Wollongong, NSW, Australia
[2] Univ Queensland, Sch Earth & Environm Sci, Brisbane, Qld, Australia
[3] Australian Natl Univ, Res Sch Earth Sci, Canberra, ACT 0200, Australia
[4] Nagoya Univ, Dept Earth & Planetary Sci, Nagoya, Aichi 4648601, Japan
关键词
Himalaya; Spongtang ophiolite; Indus suture; India-Eurasia collision; Ladakh; ZANGBO SUTURE ZONE; FORE-ARC BASIN; INDIA-ASIA COLLISION; U-PB AGES; TROODOS OPHIOLITIC COMPLEX; INDUS SUTURE; SOUTHERN TIBET; CONTINENTAL-MARGIN; TECTONIC EVOLUTION; XIGAZE OPHIOLITE;
D O I
10.1016/j.gr.2018.07.003
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
The Spongtang Massif is a remnant of Neotethyan ocean crust emplaced onto the Indian passive margin along the Indus-Yarlung-Tsangpo Suture in the NW Himalayan region of Ladakh. The age, tectonic evolution and timing of ophiolite obduction are critical to our understanding of the mechanisms via which entire oceans are formed, consumed and partly preserved before the onset of terminal continent-continent collisions. Geochemistry of the gabbro and basaltic units suggest the presence of both MORB-type and primitive arc-related mafic rocks. Zircons extracted from the Spongtang Massif gabbros yield U-Pb (SHRIMP) ages of 136-133 Ma with initial et if values of +14 to +16, indicating Early Cretaceous juvenile, depleted mantle sources devoid of contamination by older continental crust. Previously, Middle Jurassic (-177 Ma) zircon ages were obtained from gabbro and we suggest these represent MORB-type Neotethyan oceanic crust through which a younger intra-oceanic island arc (Spong arc) developed in response to subduction initiation during the Early Cretaceous (similar to 136 Ma). Our zircon ages are consistent with Early Cretaceous ages obtained for radiolarian cherts within the Spong Arc complex. Subduction beneath the Spong Arc continued until its collision with the northern Indian continental margin during the early Eocene. We suggest that the Spongtang Massif is equivalent to the nearby Dras island arc terrane. Intraoceanic subduction beneath this system was possibly initiated along NNE-SSW trending transform faults in the Neotethyan Ocean, along which different ages of ocean crust was juxtaposed, thereby development of the Early Cretaceous Spong Arc is superimposed on the older Jurassic Spongtang N-MORB crust. The juvenile CHI signature indicates the subduction system that spawned the Spong island arc was not related to the coeval Trans Himalayan (Ladakh-Gangdese) arc that developed along the southern margin of Eurasia. The age, composition and nature of geological relationships with the underlying Indian rocks indicate the Spong Arc was a juvenile, intra-oceanic terrane that first collided with India before the onset of final continent-continent collision. Therefore, final late Eocene Neotethys closure was between the Kohistan-Ladakh (Eurasian) continental arc and the already inactive Indian + Spongtang margin. (C) 2018 International Association for Gondwana Research. Published by Elsevier B.V. All rights reserved.
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页码:226 / 249
页数:24
相关论文
共 194 条
[121]   TROODOS OPHIOLITIC COMPLEX WAS PROBABLY FORMED IN AN ISLAND ARC [J].
MIYASHIRO, A .
EARTH AND PLANETARY SCIENCE LETTERS, 1973, 19 (02) :218-224
[122]   CLASSIFICATION, CHARACTERISTICS, AND ORIGIN OF OPHIOLITES [J].
MIYASHIRO, A .
JOURNAL OF GEOLOGY, 1975, 83 (02) :249-281
[123]   CENOZOIC TECTONICS OF ASIA - EFFECTS OF A CONTINENTAL COLLISION [J].
MOLNAR, P ;
TAPPONNIER, P .
SCIENCE, 1975, 189 (4201) :419-426
[124]  
Moores E.M., 1980, Ophiolites Symposium, P424
[125]   The Tethyan Himalayan detrital record shows that India-Asia terminal collision occurred by 54 Ma in the Western Himalaya [J].
Najman, Y. ;
Jenks, D. ;
Godin, L. ;
Boudagher-Fadel, M. ;
Millar, I. ;
Garzanti, E. ;
Horstwood, M. ;
Bracciali, L. .
EARTH AND PLANETARY SCIENCE LETTERS, 2017, 459 :301-310
[126]   THE XIGAZE OPHIOLITE (TIBET) - A PECULIAR OCEANIC LITHOSPHERE [J].
NICOLAS, A ;
GIRARDEAU, J ;
MARCOUX, J ;
DUPRE, B ;
WANG, XB ;
CAO, YG ;
ZHENG, HX ;
XIAO, XC .
NATURE, 1981, 294 (5840) :414-417
[127]   PRECISE U-PB AGES OF DULUTH COMPLEX AND RELATED MAFIC INTRUSIONS, NORTHEASTERN MINNESOTA - GEOCHRONOLOGICAL INSIGHTS TO PHYSICAL, PETROGENETIC, PALEOMAGNETIC, AND TECTONOMAGMATIC PROCESSES ASSOCIATED WITH THE 1.1 GA MIDCONTINENT RIFT SYSTEM [J].
PACES, JB ;
MILLER, JD .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 1993, 98 (B8) :13997-14013
[128]  
PATCHETT PJ, 1981, CONTRIB MINERAL PETR, V78, P279
[129]   The Troodos ophiolitic complex probably formed in a subduction initiation, slab edge setting [J].
Pearce, J. A. ;
Robinson, P. T. .
GONDWANA RESEARCH, 2010, 18 (01) :60-81
[130]  
Pearce J.A., 1982, Andesites, P528