Karolina Kośmińska
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Studying quartz behavior in (ultra)high-pressure metamorphic rocks: common mineral with underappreciated potential
Open Date: 2022-09-01
Close Date: 2025-09-01
Grant: Close
Application of the “Thermoba-Raman-try” technique to various middle and high grade rocks: a case study in the Caledonides of western Svalbard
Open Date: 2016-08-01
Close Date: 2017-02-01
Grant: Close
Meso-neoproterozoic evolution of the Caledonian basement of SW Svalbard
Open Date: 2014-09-01
Close Date: 2017-11-01
Grant: Close
Mapping and petrology of high-grade metamorphic rocks of Prins Karls Forland (RiS ID: 6571)
Open Date: 2014-01-01
Close Date:
Articles (15)
Late Ediacaran–early Cambrian rifting along the northern margin of Laurentia: constraints from the Yelverton Formation of Ellesmere Island, Canada
Neoproterozoic to early Paleozoic strata exposed along the northeastern margin of North America (Franklinian Basin) record a prolonged history of rifting and passive margin development. An episode of Ediacaran–Cambrian extension is potentially recorded in volcanic and sedimentary rocks of the Yelverton Formation, exposed on northern Ellesmere Island, Nunavut, Canada. Here, we present new whole-rock trace element and isotope geochemistry and hornblende 40 Ar/ 39 Ar geochronology from intrusive and extrusive rocks of the Yelverton Formation, along with isotope geochemistry from carbonate rocks underlying the volcanics and detrital zircon U–Pb and Lu–Hf isotopic data from the Yelverton Formation and overlying Grant Land Formation. The carbonate strata yielded an average 87 Sr/ 86 Sr value of 0.7076 ( n = 6), constraining the overlying volcanics to the late Ediacaran–early Cambrian (ca. 570–530 Ma). Flows and dikes/sills show three distinct compositions: (1) a depleted, low La/Yb PM and Th/Nb group, (2) an enriched, higher La/Yb PM and low Th/Nb group, and (3) a low to moderate La/Yb PM and high Th/Nb group. One of the high Th/Nb intrusions produced saddle-shaped 40 Ar/ 39 Ar hornblende spectra with ca. 482 ± 7 Ma age minima and Silurian–Devonian inverse isochron ages, highlighting a hitherto unknown suite of younger intrusions and volcanic rocks. The trace element geochemistry and 143 Nd/ 144 Nd (t) ratios of enriched and depleted volcanic rocks of the indisputable Yelverton Formation are consistent with decompression melting during rifting along a continental margin. We suggest that late Ediacaran–early Cambrian rifting recorded in the Yelverton Formation resulted in the separation of peri-Laurentian terranes, such as the North Slope subterrane and eventual development of the passive margin of northern Laurentia.
Year:
2023
Collaborators (15)
Jaroslaw Majka
AGH University of Science and Technology
Jakub Bazarnik
Polish Geological Institute
Grzegorz Ziemniak
University of Wrocław
Pauline JEANNERET
Lecturer
Uppsala University
Michał Bukała
Assistant professor
Polish Geological Institute
William McClelland
The University of Iowa
Carsten Münker
Professor
University of Cologne
Iwona Klonowska
Assistant Professor
AGH University of Science and Technology
Henning Lorenz
Uppsala University
Justin V. Strauss
Dartmouth College
Stanislaw Mazur
Professor
Polish Academy of Sciences
Katarzyna Walczak
AGH University of Science and Technology
Bartosz Budzyń
Associate professor
Polish Academy of Sciences
Maciej Manecki
professor
AGH University of Science and Technology
Christopher J. Barnes
Assistant Professor
Polish Academy of Sciences

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