Cenozoic magmatism in the western Ross embayment:Role of mantle plume versus plate dynamics in the development of the West Antarctic Rift System

Geochemical and chronological data for Cenozoic plutons and dikes from northern Victoria Land (Antarctica), were used to propose a tectonic-magmatic model for this portion of the West Antarctic Rift System (WARS). The seven major plutons are compositionally bimodal, with gabbroic and syenitic portio...

Full description

Bibliographic Details
Main Authors: Rocchi, Sergio, Armienti, Pietro, D'Orazio, Massimo, Tonarini, Sonia, Wijbrans, Jan R., Di Vincenzo, Gianfranco
Format: Article in Journal/Newspaper
Language:English
Published: 2002
Subjects:
Online Access:https://research.vu.nl/en/publications/f74c7290-1ac6-4aa0-ab90-0bf17db2b4c2
https://hdl.handle.net/1871.1/f74c7290-1ac6-4aa0-ab90-0bf17db2b4c2
http://www.scopus.com/inward/record.url?scp=0037058540&partnerID=8YFLogxK
http://www.scopus.com/inward/citedby.url?scp=0037058540&partnerID=8YFLogxK
_version_ 1835020337707745280
author Rocchi, Sergio
Armienti, Pietro
D'Orazio, Massimo
Tonarini, Sonia
Wijbrans, Jan R.
Di Vincenzo, Gianfranco
author_facet Rocchi, Sergio
Armienti, Pietro
D'Orazio, Massimo
Tonarini, Sonia
Wijbrans, Jan R.
Di Vincenzo, Gianfranco
author_sort Rocchi, Sergio
collection Unknown
description Geochemical and chronological data for Cenozoic plutons and dikes from northern Victoria Land (Antarctica), were used to propose a tectonic-magmatic model for this portion of the West Antarctic Rift System (WARS). The seven major plutons are compositionally bimodal, with gabbroic and syenitic portions. Among the 180 studied dikes, most are 1 m thick and have alkali basalt-basanite-tephrite compositions, along with minor intermediate rocks. Trachytic-rhyolitic dikes (up to 50 m thick) are by far less common. The 40 Ar- 39 Ar data for dikes indicate middle Eocene to early Oligocene ages, the oldest found to date for igneous activity throughout the WARS. The geochronological-structural framework provides evidence for coeval emplacement of dikes on two main NW-SE and N-S striking trends, whereas plutonic-subvolcanic activity occurred in adjacent crustal sectors at different times. Mafic dikes display major and trace element distribution typical of basalts from oceanic islands, such as high ratios of Nb and Ta to large ion lithophile and heavy rare earth elements, coupled with prominent negative K and Pb anomalies in the primitive mantle-normalized multielement diagrams. Initial isotopic compositions are within the ranges of 0.70299-0.70372 for 87 Sr/ 86 Sr and 4.2-6.3 for ε Nd . These features are shared by younger Neogene lavas. Geochemical modeling for both mafic dikes and lavas indicates an enriched magma source characterized by a residual potassic hydrous phase, thus pointing out a mantle source nearly uniform throughout 50 m.y. Comparable geochemical signature are reported for the magma source of the other Cenozoic volcanic provinces of the WARS and the whole Antarctic Plate. The new data for the early igneous rocks of the rift put in evidence a chronologic-structural link between magmatic evolution, regional tectonics and plate dynamics which suggests a model for WARS magmatism that is alternative to current plume hypotheses. We propose that magma genesis and emplacement are related to reactivation of ...
format Article in Journal/Newspaper
genre Antarc*
Antarctic
Antarctica
Victoria Land
genre_facet Antarc*
Antarctic
Antarctica
Victoria Land
geographic Antarctic
Victoria Land
geographic_facet Antarctic
Victoria Land
id ftvuamstcris:oai:research.vu.nl:publications/f74c7290-1ac6-4aa0-ab90-0bf17db2b4c2
institution Open Polar
language English
op_collection_id ftvuamstcris
op_rights info:eu-repo/semantics/restrictedAccess
op_source Rocchi , S , Armienti , P , D'Orazio , M , Tonarini , S , Wijbrans , J R & Di Vincenzo , G 2002 , ' Cenozoic magmatism in the western Ross embayment : Role of mantle plume versus plate dynamics in the development of the West Antarctic Rift System ' , Journal of Geophysical Research: Solid Earth , vol. 107 , no. 9 .
publishDate 2002
record_format openpolar
spelling ftvuamstcris:oai:research.vu.nl:publications/f74c7290-1ac6-4aa0-ab90-0bf17db2b4c2 2025-06-15T14:10:22+00:00 Cenozoic magmatism in the western Ross embayment:Role of mantle plume versus plate dynamics in the development of the West Antarctic Rift System Rocchi, Sergio Armienti, Pietro D'Orazio, Massimo Tonarini, Sonia Wijbrans, Jan R. Di Vincenzo, Gianfranco 2002-11-10 https://research.vu.nl/en/publications/f74c7290-1ac6-4aa0-ab90-0bf17db2b4c2 https://hdl.handle.net/1871.1/f74c7290-1ac6-4aa0-ab90-0bf17db2b4c2 http://www.scopus.com/inward/record.url?scp=0037058540&partnerID=8YFLogxK http://www.scopus.com/inward/citedby.url?scp=0037058540&partnerID=8YFLogxK eng eng info:eu-repo/semantics/restrictedAccess Rocchi , S , Armienti , P , D'Orazio , M , Tonarini , S , Wijbrans , J R & Di Vincenzo , G 2002 , ' Cenozoic magmatism in the western Ross embayment : Role of mantle plume versus plate dynamics in the development of the West Antarctic Rift System ' , Journal of Geophysical Research: Solid Earth , vol. 107 , no. 9 . Antarctica Geochemistry Geochronology Magmatism Plume Rift /dk/atira/pure/sustainabledevelopmentgoals/life_below_water name=SDG 14 - Life Below Water article 2002 ftvuamstcris 2025-05-19T00:13:58Z Geochemical and chronological data for Cenozoic plutons and dikes from northern Victoria Land (Antarctica), were used to propose a tectonic-magmatic model for this portion of the West Antarctic Rift System (WARS). The seven major plutons are compositionally bimodal, with gabbroic and syenitic portions. Among the 180 studied dikes, most are 1 m thick and have alkali basalt-basanite-tephrite compositions, along with minor intermediate rocks. Trachytic-rhyolitic dikes (up to 50 m thick) are by far less common. The 40 Ar- 39 Ar data for dikes indicate middle Eocene to early Oligocene ages, the oldest found to date for igneous activity throughout the WARS. The geochronological-structural framework provides evidence for coeval emplacement of dikes on two main NW-SE and N-S striking trends, whereas plutonic-subvolcanic activity occurred in adjacent crustal sectors at different times. Mafic dikes display major and trace element distribution typical of basalts from oceanic islands, such as high ratios of Nb and Ta to large ion lithophile and heavy rare earth elements, coupled with prominent negative K and Pb anomalies in the primitive mantle-normalized multielement diagrams. Initial isotopic compositions are within the ranges of 0.70299-0.70372 for 87 Sr/ 86 Sr and 4.2-6.3 for ε Nd . These features are shared by younger Neogene lavas. Geochemical modeling for both mafic dikes and lavas indicates an enriched magma source characterized by a residual potassic hydrous phase, thus pointing out a mantle source nearly uniform throughout 50 m.y. Comparable geochemical signature are reported for the magma source of the other Cenozoic volcanic provinces of the WARS and the whole Antarctic Plate. The new data for the early igneous rocks of the rift put in evidence a chronologic-structural link between magmatic evolution, regional tectonics and plate dynamics which suggests a model for WARS magmatism that is alternative to current plume hypotheses. We propose that magma genesis and emplacement are related to reactivation of ... Article in Journal/Newspaper Antarc* Antarctic Antarctica Victoria Land Unknown Antarctic Victoria Land
spellingShingle Antarctica
Geochemistry
Geochronology
Magmatism
Plume
Rift
/dk/atira/pure/sustainabledevelopmentgoals/life_below_water
name=SDG 14 - Life Below Water
Rocchi, Sergio
Armienti, Pietro
D'Orazio, Massimo
Tonarini, Sonia
Wijbrans, Jan R.
Di Vincenzo, Gianfranco
Cenozoic magmatism in the western Ross embayment:Role of mantle plume versus plate dynamics in the development of the West Antarctic Rift System
title Cenozoic magmatism in the western Ross embayment:Role of mantle plume versus plate dynamics in the development of the West Antarctic Rift System
title_full Cenozoic magmatism in the western Ross embayment:Role of mantle plume versus plate dynamics in the development of the West Antarctic Rift System
title_fullStr Cenozoic magmatism in the western Ross embayment:Role of mantle plume versus plate dynamics in the development of the West Antarctic Rift System
title_full_unstemmed Cenozoic magmatism in the western Ross embayment:Role of mantle plume versus plate dynamics in the development of the West Antarctic Rift System
title_short Cenozoic magmatism in the western Ross embayment:Role of mantle plume versus plate dynamics in the development of the West Antarctic Rift System
title_sort cenozoic magmatism in the western ross embayment:role of mantle plume versus plate dynamics in the development of the west antarctic rift system
topic Antarctica
Geochemistry
Geochronology
Magmatism
Plume
Rift
/dk/atira/pure/sustainabledevelopmentgoals/life_below_water
name=SDG 14 - Life Below Water
topic_facet Antarctica
Geochemistry
Geochronology
Magmatism
Plume
Rift
/dk/atira/pure/sustainabledevelopmentgoals/life_below_water
name=SDG 14 - Life Below Water
url https://research.vu.nl/en/publications/f74c7290-1ac6-4aa0-ab90-0bf17db2b4c2
https://hdl.handle.net/1871.1/f74c7290-1ac6-4aa0-ab90-0bf17db2b4c2
http://www.scopus.com/inward/record.url?scp=0037058540&partnerID=8YFLogxK
http://www.scopus.com/inward/citedby.url?scp=0037058540&partnerID=8YFLogxK