Dynamics of Cambro-Ordovician rifting of the northern margin of Gondwana as revealed by the timing of subsidence and magmatism in rift-related basins
The Bohemian Massif of Central Europe is a Variscan collage of lithospheric fragments that formed at the northern margin of Gondwana during the late Neoproterozoic. A key geodynamic process that shaped this margin before it became involved in the Variscan orogen was the Cambro-Ordovician rifting tha...
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Published in | International geology review Vol. 65; no. 19; pp. 3004 - 3027 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
Philadelphia
Taylor & Francis
28.10.2023
Taylor & Francis Ltd |
Subjects | |
Online Access | Get full text |
ISSN | 0020-6814 1938-2839 |
DOI | 10.1080/00206814.2023.2172619 |
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Abstract | The Bohemian Massif of Central Europe is a Variscan collage of lithospheric fragments that formed at the northern margin of Gondwana during the late Neoproterozoic. A key geodynamic process that shaped this margin before it became involved in the Variscan orogen was the Cambro-Ordovician rifting that opened the Rheic Ocean. This rifting event has been studied extensively, yet a number of issues remain unresolved, among which are its geodynamic causes. New U-Pb zircon ages of orthogneisses from the mid-crustal Moldanubian unit, in combination with available information on magmatism and basin subsidence in the upper-crustal Teplá-Barrandian unit of the Bohemian Massif, are here used to reconstruct in detail the mechanism of the Cambro-Ordovician rifting. We argue that extension occurred in three phases defined by (1) protracted ~524-480 Ma intermediate to felsic plutonism (including the dated ~490-480 Ma orthogneisses), (2) basaltic submarine volcanism at ca. 470 Ma, and (3) rapid subsidence at ca. 458-452 Ma. This relative timing is interpreted to reflect stretching of the lower lithosphere before upper lithospheric rifting. In a broader context, these inferences are compatible with contrasting, rheologically controlled modes of northern Gondwana break-up during the early Ordovician, in which the westerly Avalonian-type terranes were rifted away from Gondwana, whereas the easterly Cadomian-type terranes formed a hyperextended Gondwanan shelf. |
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AbstractList | The Bohemian Massif of Central Europe is a Variscan collage of lithospheric fragments that formed at the northern margin of Gondwana during the late Neoproterozoic. A key geodynamic process that shaped this margin before it became involved in the Variscan orogen was the Cambro-Ordovician rifting that opened the Rheic Ocean. This rifting event has been studied extensively, yet a number of issues remain unresolved, among which are its geodynamic causes. New U-Pb zircon ages of orthogneisses from the mid-crustal Moldanubian unit, in combination with available information on magmatism and basin subsidence in the upper-crustal Teplá-Barrandian unit of the Bohemian Massif, are here used to reconstruct in detail the mechanism of the Cambro-Ordovician rifting. We argue that extension occurred in three phases defined by (1) protracted ~524-480 Ma intermediate to felsic plutonism (including the dated ~490-480 Ma orthogneisses), (2) basaltic submarine volcanism at ca. 470 Ma, and (3) rapid subsidence at ca. 458-452 Ma. This relative timing is interpreted to reflect stretching of the lower lithosphere before upper lithospheric rifting. In a broader context, these inferences are compatible with contrasting, rheologically controlled modes of northern Gondwana break-up during the early Ordovician, in which the westerly Avalonian-type terranes were rifted away from Gondwana, whereas the easterly Cadomian-type terranes formed a hyperextended Gondwanan shelf. The Bohemian Massif of Central Europe is a Variscan collage of lithospheric fragments that formed at the northern margin of Gondwana during the late Neoproterozoic. A key geodynamic process that shaped this margin before it became involved in the Variscan orogen was the Cambro–Ordovician rifting that opened the Rheic Ocean. This rifting event has been studied extensively, yet a number of issues remain unresolved, among which are its geodynamic causes. New U–Pb zircon ages of orthogneisses from the mid-crustal Moldanubian unit, in combination with available information on magmatism and basin subsidence in the upper-crustal Teplá–Barrandian unit of the Bohemian Massif, are here used to reconstruct in detail the mechanism of the Cambro–Ordovician rifting. We argue that extension occurred in three phases defined by (1) protracted ~524–480 Ma intermediate to felsic plutonism (including the dated ~490–480 Ma orthogneisses), (2) basaltic submarine volcanism at ca. 470 Ma, and (3) rapid subsidence at ca. 458–452 Ma. This relative timing is interpreted to reflect stretching of the lower lithosphere before upper lithospheric rifting. In a broader context, these inferences are compatible with contrasting, rheologically controlled modes of northern Gondwana break-up during the early Ordovician, in which the westerly Avalonian-type terranes were rifted away from Gondwana, whereas the easterly Cadomian-type terranes formed a hyperextended Gondwanan shelf. |
Author | Žák, Jiří Syahputra, Reza Sláma, Jiří Nance, R. Damian |
Author_xml | – sequence: 1 givenname: Jiří orcidid: 0000-0001-5803-0008 surname: Žák fullname: Žák, Jiří email: jirizak@natur.cuni.cz organization: Charles University – sequence: 2 givenname: Jiří orcidid: 0000-0002-1386-4196 surname: Sláma fullname: Sláma, Jiří organization: Institute of Geology, Czech Academy of Sciences – sequence: 3 givenname: Reza orcidid: 0000-0001-6138-8924 surname: Syahputra fullname: Syahputra, Reza organization: Universitas Indonesia, Depok Campus – sequence: 4 givenname: R. Damian orcidid: 0000-0001-9431-0963 surname: Nance fullname: Nance, R. Damian organization: Yale University |
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SubjectTerms | Avalonian-Cadomian belt Bohemian Massif Gondwana hyperextension laser ablation ICP-MS Lithosphere Magma Massifs Ordovician Orogeny passive margin Rheic Ocean Rheological properties Rifting Subsidence U-Pb zircon geochronology Volcanic activity Volcanism Zircon |
Title | Dynamics of Cambro-Ordovician rifting of the northern margin of Gondwana as revealed by the timing of subsidence and magmatism in rift-related basins |
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