Kinematic, Metamorphic, and Age Constraints on the Miyar Thrust Zone: Implications for the Eohimalayan History of the High Himalayan Crystalline of NW India
Author:
Affiliation:
1. Institute of Earth Sciences University of Lausanne Lausanne Switzerland
2. Institute of Geological Sciences University of Bern Bern Switzerland
Funder
Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung
Publisher
American Geophysical Union (AGU)
Subject
Geochemistry and Petrology,Geophysics
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1029/2020TC006379
Reference67 articles.
1. The South Tibetan Detachment System, Himalayan Orogen: Extension Contemporaneous With and Parallel to Shortening in a Collisional Mountain Belt
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3. Non-matrix-matched standardisation in LA-ICP-MS analysis: general approach, and application to allanite Th–U–Pb dating
4. The Himalayan Central Thrust—New data about the reverse metamorphism at the bottom of the Tibetan slab;Caby R.;Revue De Geologie Dynamique Et De Geographie Physique,1983
5. 20 years of geological mapping of the metamorphic core across Central and Eastern Himalayas
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1. Structural and metamorphic architecture of the Zanskar Himalaya, Suru Valley region, NW India: Implications for the evolution of the Himalayan metamorphic core;Geological Society of America Bulletin;2024-06-14
2. Evidence for a pre-Himalayan metamorphism in the High Himalayan Crystalline of the Miyar Valley (NW India);Swiss Journal of Geosciences;2023-11-02
3. Oligo‐Miocene Exhumation of the Metamorphic Core Zone of the Himalaya Across the Range;Himalaya, Dynamics of a Giant 2;2023-07-21
4. The Greater Himalayan Sequence – Tectonic, Petrographic and Kinematic Evolution of the Metamorphic Core Zone of the Himalayan Orogeny;Himalaya, Dynamics of a Giant 2;2023-07-21
5. Records of Himalayan Metamorphism and Contractional Tectonics in the Central Himalayas (Darondi Khola, Nepal);Compressional Tectonics;2023-05-19
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