TY - JOUR
T1 - Petrology and U-Pb geochronology of zircon in a suite of charnockitic gneisses from parts of the Chotanagpur Granite Gneiss Complex (CGGC)
T2 - Evidence for the reworking of a Mesoproterozoic basement during the formation of the Rodinia supercontinent
AU - Mukherjee, Subham
AU - Dey, Anindita
AU - Sanyal, Sanjoy
AU - Ibanez-Mejia, Mauricio
AU - Dutta, Upama
AU - Sengupta, Pulak
N1 - Funding Information:
SM and AD acknowledge the financial support from the University Grant Commission, New Delhi and the Council of Scientific and Industrial Research, New Delhi, respectively. PS and SS acknowledge the grants received from the programmes University Potential for Excellence (Phase II) Jadavpur University and Centre of Advance Studies (phase VI), Department of Geological Sciences, Jadavpur University. Staffmembers of the ALC are thanked for their kind assistance while obtaining the zircon CL images and geochronological results presented in this study. UD would like to thank the Department of Applied Geology, Indian School of Mines, Dhanbad for financial assistance. Authors acknowledge the Institut f?r Mineralogy, Ruhr Universit?t, Bochum for providing the major oxides analyses facility. We thank two anonymous reviewers whose constructive comments have improved the clarity of the manuscript. We thank Professors N.C. Pant and S. Dasgupta for inviting us to submit this paper to this Special Publication.
Publisher Copyright:
© 2017 The Author(s).
PY - 2017
Y1 - 2017
N2 - Understanding the evolution of the Chotanagpur Granite Gneiss Complex (CGGC) of the East Indian Shield is crucial to decipher the role of the Indian Shield in the formation of the Rodinia supercontinent. The area around Deoghar-Dumka exposes a suite of granulite-facies orthogneisses (variably retrogressed to amphibole-biotite gneiss) that enclose remnants of Palaeoproterozoic metasedimentary and meta-igneous rocks. Results from mineral chemistry, laser ablation inductively coupled plasma mass spectrometry (LA ICP-MS) U-Pb dating of zircon and limited bulk-rock compositions of the studied rocks suggest that the magmatic protoliths of the felsic orthogneisses had A-type chemistry, and that these were emplaced at approximately 1450 Ma presumably in a continental rift setting. Intense deformation and metamorphism of the felsic rock culminated at approximately 9 kbar and 850°C along an apparent geothermal gradient of 26°C km-1. These peak metamorphic conditions were successively followed by initially a steeply decompressive and then a weakly decompressive retrograde pressure-temperature path. The shape of the retrograde pressure-temperature path and the estimated geothermal gradient at the metamorphic peak are interpreted to be the products of continent-continent collision; U-Pb dates of metamorphic zircon overgrowths suggest an age of approximately 943 Ma for the collisional event. This study demonstrates that 'Grenville-age' orogenesis thoroughly reworked the approximately 1450 myr-old basement of the CGGC during the formation of the Rodinia supercontinent.
AB - Understanding the evolution of the Chotanagpur Granite Gneiss Complex (CGGC) of the East Indian Shield is crucial to decipher the role of the Indian Shield in the formation of the Rodinia supercontinent. The area around Deoghar-Dumka exposes a suite of granulite-facies orthogneisses (variably retrogressed to amphibole-biotite gneiss) that enclose remnants of Palaeoproterozoic metasedimentary and meta-igneous rocks. Results from mineral chemistry, laser ablation inductively coupled plasma mass spectrometry (LA ICP-MS) U-Pb dating of zircon and limited bulk-rock compositions of the studied rocks suggest that the magmatic protoliths of the felsic orthogneisses had A-type chemistry, and that these were emplaced at approximately 1450 Ma presumably in a continental rift setting. Intense deformation and metamorphism of the felsic rock culminated at approximately 9 kbar and 850°C along an apparent geothermal gradient of 26°C km-1. These peak metamorphic conditions were successively followed by initially a steeply decompressive and then a weakly decompressive retrograde pressure-temperature path. The shape of the retrograde pressure-temperature path and the estimated geothermal gradient at the metamorphic peak are interpreted to be the products of continent-continent collision; U-Pb dates of metamorphic zircon overgrowths suggest an age of approximately 943 Ma for the collisional event. This study demonstrates that 'Grenville-age' orogenesis thoroughly reworked the approximately 1450 myr-old basement of the CGGC during the formation of the Rodinia supercontinent.
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U2 - 10.1144/SP457.6
DO - 10.1144/SP457.6
M3 - Article
AN - SCOPUS:85032748696
SN - 0305-8719
VL - 457
SP - 197
EP - 231
JO - Geological Society Special Publication
JF - Geological Society Special Publication
IS - 1
ER -