Journal of Petrology Advance Access originally published online on April 15, 2005
Journal of Petrology 2005 46(9):1805-1833; doi:10.1093/petrology/egi035
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PressureTemperature Evolution of a Late Palaeozoic Paired Metamorphic Belt in NorthCentral Chile (34°35°30'S)
INSTITUT FÜR GEOLOGIE, MINERALOGIE & GEOPHYSIK, RUHR-UNIVERSITÄT, D-44780 BOCHUM, GERMANY
RECEIVED MARCH 3, 2004; ACCEPTED MARCH 9, 2005
In the Chilean Coastal Cordillera, two units, the Western and Eastern Series, constitute coeval parts of a Late Palaeozoic paired metamorphic belt dominated by siliciclastic metasediments. The Western Series also contains rocks from the upper oceanic crust and represents an accretionary prism. Omnipresent high-pressure conditions are reflected by NaCa-amphibole and phengite in greenschists. Peak PT conditions of 7·09·3 kbar, 380420°C point to a metamorphic gradient of 1116°C/km. Three unique occurrences of blueschist yield deviating conditions of 9·510·7 kbar, 350385°C and are interpreted as relics from the lowermost part of the basal accretion zone preserving the original gradient of 911°C/km along the subducting slab. Pervasive ductile deformation related to basal accretion occurred near peak PT conditions. Deformation and PT evolution of the metapsammopelitic rocks is similar to that of the metabasites. However, a rare garnet mica-schist yields peak PT conditions of 9·614·7 kbar, 390440°C reflecting a retrograde stage after cooling from a high-temperature garnet-forming stage. It is considered to be an exhumed relic from the earliest siliciclastic rocks subducted below a still hot mantle wedge. A retrograde overprint of all rock types occurred at
300380°C. Continuous reactions caused crystal growth and recrystallization with abundant free water mostly under strain-free conditions. They record a pressure release of 34 kbar without erasing peak metamorphic mineral compositions. The Eastern Series lacks metabasite intercalations and represents a less deformed retro-wedge area. In the study area it was entirely overprinted at a uniform depth at 3 ± 0·5 kbar with temperatures progressively rising from 400°C to 720°C towards the coeval Late Palaeozoic magmatic arc batholith. The interrelated pattern of PT data permits a conceptual reconstruction of the fossil convergent margin suggesting a flat subduction angle of
25° with continuous basal accretion at a depth of 2540 km and a short main intrusion pulse in the magmatic arc. The latter was accompanied by the formation of a thermal dome in the retro-wedge area, which remained stable relative to the vertically growing accretionary prism characterized by cyclic mass flow.
KEY WORDS: paired metamorphic belt; greenschist; blueschist; central Chile; thermobarometry
* E-mail: arne.willner{at}ruhr-uni-bochum.de
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