Crustal Melting Evidence in Migmatites of Higher Himalayan Crystallines (HHC) along Bhagirathi, Dhauliganga Valleys, and Sikkim Himalaya, India
Author:
Publisher
Springer Science and Business Media LLC
Subject
Geology
Link
https://link.springer.com/content/pdf/10.1007/s12594-022-1930-4.pdf
Reference48 articles.
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2. Bartoli, O., Cesare, B., Poli, S., Acosta-Vigil, A., Esposito, R., Turina, A., Bodnar, R. J., Angel, R. J., Hunter, J. (2013) Nanogranite inclusions in migmatitic garnet: behavior during piston-cylinder re-melting experiments. Geofluids, v.13, pp.405–420
3. Bartoli O., Acosta-Vigil A., Ferrero O., Cesare B. (2016) Granitoid magmas preserved as melt inclusions in high-grade metamorphic rocks. Amer. Mineral., v.101, pp.1543–1559.
4. Brown M. (1994) The generation, segregation, ascent and emplacement of granite magma: The migmatite-to-crustally-derived granite connection in thickened orogens: Earth-Science Rev., v.36, pp.83–130, doi:https://doi.org/10.1016/0012-8252(94)90009-4.
5. Brown, M. (2002) Retrograde processes in migmatites and granulites revisited. Jour. Metamorp. Geol., v.20(1), pp.25–40.
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1. Southernmost limit of felsic magmatism along North Almora Thrust in the Himalayan domain;Geological Journal;2024-07-28
2. Zircon, Monazite SHRIMP U-Th-Pb and Quartz Oxygen Isotopic Results from the Higher Himalayan Crystallines (HHC) of the Sikkim Himalayas;Minerals;2024-05-30
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