The Tso Morari Crystalline Complex (TMC), eastern Ladakh, is marked by the presence of eclogites as boudins and lenses within the Puga Formation. These eclogites are composed of garnet, omphacite, amphibole, phengite, glaucophane, quartz, and iron oxide, with rare coesite inclusions in garnet reflecting ultrahigh-pressure metamorphic characteristics. Geochemically, TMC eclogites have high Fe-Ti basaltic compositions and classify as subalkaline tholeiites. Rare earth element and multielement diagrams display enriched patterns similar to enriched mid-ocean ridge basalt coupled with perturbed large ion lithophile elements and higher whole-rock (87Sr/86Sr) ratios (0.70884 to 0.72721) reflecting the possible influence of postcrystallization processes rather than variable interaction with host granite gneisses (87Sr/86Sr ratio: ∼0.73901). To evaluate the existing protolith possibilities, we calculated εNd() values (+1.9 to +9.5) and εNd() values (+1.1 to +8.9) of TMC eclogites; both indicate their derivation from depleted-mantle sources. The εNd() values of the early Permian enriched Panjal volcanics of Kashmir Valley (−5.3 to +1.3) and Phe volcanics of Zanskar Himalaya (−7.4 to −1.1) are very different from TMC eclogites. However, the εNd() values of TMC eclogites are similar to the depleted Panjal volcanics (+0.3 to +4.3). Similarly, the εNd() values of the TMC eclogites closely resemble those of the adjoining Ladakh ophiolites, such as the Nidar-Spongtang-Shergol-Dras ophiolitic mafic rocks (+5.1 to +9.9). These observations partly negate the existing hypothesis of enriched Panjal and Phe volcanics for being the protolith for the TMC eclogites. Thus, we propose that the protolith for the TMC eclogites could be represented by the subducted portion of the early Permian depleted Panjal volcanics and Late Jurassic to Early Cretaceous Ladakh ophiolitic mafic rocks, subducted to eclogite-grade metamorphism (around ~53 Ma) and were subsequently tectonically accreted to the obducting Indian continental crust during their exhumation.
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May 01, 2022
Tso Morari Eclogites, Eastern Ladakh: Isotopic and Elemental Constraints on Their Protolith, Genesis, and Tectonic Setting Available to Purchase
Talat Ahmad;
1.
Department of Geology, University of Delhi, Delhi 110007, India*
Author for correspondence; present address: Vice Chancellor’s Office, University of Kashmir, Srinagar 190006, India; email: [email protected].
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Irfan Maqbool Bhat;
Irfan Maqbool Bhat
2.
Department of Earth Sciences, University of Kashmir, Srinagar 190006, India
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Tsuyoshi Tanaka;
Tsuyoshi Tanaka
3.
Graduate School of Environmental Studies, Nagoya University, Nagoya 464861, Japan
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Mike Bickle;
Mike Bickle
4.
Department of Earth Sciences, University of Cambridge, Cambridge CB2 3EQ, United Kingdom
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Yoshihiro Asahara;
Yoshihiro Asahara
3.
Graduate School of Environmental Studies, Nagoya University, Nagoya 464861, Japan
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Hazel Chapman;
Hazel Chapman
4.
Department of Earth Sciences, University of Cambridge, Cambridge CB2 3EQ, United Kingdom
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Himanshu K. Sachan
Himanshu K. Sachan
5.
Wadia Institute of Himalayan Geology, Dehra Dun 248001, India
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Irfan Maqbool Bhat
2.
Department of Earth Sciences, University of Kashmir, Srinagar 190006, India
Tsuyoshi Tanaka
3.
Graduate School of Environmental Studies, Nagoya University, Nagoya 464861, Japan
Mike Bickle
4.
Department of Earth Sciences, University of Cambridge, Cambridge CB2 3EQ, United Kingdom
Yoshihiro Asahara
3.
Graduate School of Environmental Studies, Nagoya University, Nagoya 464861, Japan
Hazel Chapman
4.
Department of Earth Sciences, University of Cambridge, Cambridge CB2 3EQ, United Kingdom
Himanshu K. Sachan
5.
Wadia Institute of Himalayan Geology, Dehra Dun 248001, India*
Author for correspondence; present address: Vice Chancellor’s Office, University of Kashmir, Srinagar 190006, India; email: [email protected].
Publisher: The University of Chicago Press
Received:
04 Nov 2020
Accepted:
31 Jan 2022
First Online:
03 Nov 2023
Online ISSN: 1537-5269
Print ISSN: 0022-1376
© 2022 The University of Chicago. All rights reserved.
The University of Chicago
The Journal of Geology (2022) 130 (3): 231–252.
Article history
Received:
04 Nov 2020
Accepted:
31 Jan 2022
First Online:
03 Nov 2023
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CitationTalat Ahmad, Irfan Maqbool Bhat, Tsuyoshi Tanaka, Mike Bickle, Yoshihiro Asahara, Hazel Chapman, Himanshu K. Sachan; Tso Morari Eclogites, Eastern Ladakh: Isotopic and Elemental Constraints on Their Protolith, Genesis, and Tectonic Setting. The Journal of Geology 2022;; 130 (3): 231–252. doi: https://doi.org/10.1086/719333
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Index Terms/Descriptors
- alkaline earth metals
- Asia
- chemical composition
- crust
- eclogite
- genesis
- Indian Peninsula
- isotope ratios
- isotopes
- Jammu and Kashmir
- Ladakh
- magma contamination
- magmas
- metals
- metamorphic rocks
- mobilization
- Nd-144/Nd-143
- neodymium
- protoliths
- radioactive isotopes
- rare earths
- samarium
- Sm-147/Nd-144
- Sr-87/Sr-86
- stable isotopes
- strontium
- tectonics
- whole rock
- Tso Morari Complex
Latitude & Longitude
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