A 40Ar/39Ar laser probe study of micas from the Sesia Zone, Italian Alps: implications for metamorphic and deformation histories
ISSN: |
1525-1314
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Source: |
Blackwell Publishing Journal Backfiles 1879-2005
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Topics: |
Geosciences
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Notes: |
Two samples from the Eclogite Micaschist Complex (EMC) and the Seconda Zona Diorito–Kinzigitica (IIDK) of the Sesia Zone have been studied using a high-spatial resolution laser probe 40Ar/39Ar technique with the aim of investigating the complexities of argon behaviour in metamorphic rocks and comparing their thermal histories. Data from a single large phengite grain from the EMC show a range of ages from mid-Jurassic to Upper Cretaceous. These ‘apparent age’ variations are spatially related to both locationwithin the grain and to intragrain microstructure. Modelling of the data shows that the profile formedby the diffusion of an excess argon component into the grain, parallel to the mica cleavage. Profileasymmetry is explained by temporal variations in microstructural development enabling excess argon toenter the grain at different times in different places. The temperatures of the initiation of deformationand the possible time-scales for the deformation can be calculated as a function of cooling rate. Allestimates suggest deformation at greenschist facies, in accord with the observed retrograde mineral assemblage. Absolute temperature estimates for deformation vary by less than 22 °C for different cooling ratesof 10 and 30 °C Ma−1 but vary by 80 °C with different estimates of diffusion parameters. The durationof deformation was for at least 2 Ma at 10 °C Ma−1 or 0.7 Ma at 30 °C Ma−1. Biotites from the IIDKsample record a Permian to Upper Cretaceous age range that correlates with grain size, the smallestgrain sizes yielding the youngest ages. This relationship is best explained by a partial resetting of biotitesduring an Alpine thermal event initiated not more than 70 Ma ago. Modelling of these data suggest thatthe sample never exceeded 300 °C during the Alpine. The profoundly different thermal histories of thetwo units—the EMC recrystallized at 550 °C whilst the IIDK remained below 300 °C—suggests thatthey may not have been juxtaposed until much later than the eclogite facies metamorphism.
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Type of Medium: |
Electronic Resource
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