Geochemistry of ~2.08 Ga radiating mafic dyke swarm from the Dharwar Craton, India, and their implications on initiation of the Cuddapah Basin
Author:
Funder
Council of Scientific and Industrial Research, India
Publisher
Springer Science and Business Media LLC
Subject
General Earth and Planetary Sciences
Link
https://link.springer.com/content/pdf/10.1007/s12040-022-02014-9.pdf
Reference147 articles.
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2. Acharyya S K 2003 The nature of Mesoproterozoic Central Indian Tectonic Zone with exhumed and reworked older granulites; Gondwana Res. 6 197–214.
3. Anand M, Gibson S A, Subbarao K V, Kelley S P and Dickin A P 2003 Early Proterozoic melt generation processes beneath the intra-cratonic Cuddapah Basin, southern India; J. Petrol. 44 2139–2179.
4. Babu N R, Venkateshwarlu M, Shankar Ravi, Nagaraju E and Parashuramulu V 2018 New Paleomagnetic results on ~2367 Ma Dharwar giant dyke swarm, Dharwar Craton, southern India: Implications for Paleoproterozoic continental reconstruction; J. Earth Syst. Sci. 127 3.
5. Babu N R, Nagaraju E, Parashuramulu V and Venkateshwarlu M 2020 Preliminary anisotropy of magnetic susceptibility studies on 2367 Ma Bangalore–Karimnagar giant dyke swarm, southern India: Implications for magma flow; Phys. Earth Planet. Int. 306 106540.
Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
1. Insights into the magma dynamics of the multi-pulsed ca. 2.08 Ga Devarabanda dyke swarm, eastern Dharwar craton: Constraints from integrated geochemical, magnetic fabric and emplacement studies;Precambrian Research;2024-09
2. Contextual relationship between mechanical heterogeneity and dyking: constraints from magma emplacement dynamics of the ca. 2.21 Ga Anantapur–Kunigal mafic dyke swarm, Dharwar Craton, India;Geological Magazine;2023-10
3. Paleogeography of India at ∼1.8 Ga: New constraints from baddeleyite geochronology and paleomagnetism of mafic dykes from the Dharwar craton;Precambrian Research;2023-09
4. Aspect ratio analysis of distinct Paleoproterozoic mafic dyke swarms and related fracture systems in the Eastern Dharwar Craton, India: Implications for emplacement mechanism and depth of origin;Physics of the Earth and Planetary Interiors;2023-03
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