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Middle-Late Alpine thermotectonic evolution of the southern Rhodope Massif,Greece
Institution:1. Adam Mickiewicz University, Faculty of Geographical and Geological Sciences, Institute of Geology, ul. B. Krygowskiego 12, 61-680 Poznań, Poland;2. Polish Geological Institute-National Research Institute, Micro-Area Analysis Laboratory, ul. Rakowiecka 4, 00-975 Warszawa, Poland;1. Institute of Geochemistry and Petrology, ETH Zurich, Clausiusstrasse 25, 8092 Zurich, Switzerland;2. Institute of Mineralogy and Crystal Chemistry, University of Stuttgart, Azenbergstr. 18, D-70174 Stuttgart, Germany;3. Research School of Earth Sciences, The Australian National University, Mills Road, Canberra 0200, Australia;4. Geological Survey of Canada, 601 Booth Street, Ottawa, Ontario K1A 0E8, Canada
Abstract:The transition from the Alpine tectonic assembly to the exhumation of the units in the Rhodope metamorphic province in northernmost Greece has been refined by 40Ar/39Ar laserprobe mica analyses. Preservation of pre-Alpine (~ 280 Ma and 145 Ma) muscovite cooling ages at the western margin of the Rhodope indicate that subsequent events failed to reset the argon system thermally in white mica in the outcropping basement of this region. The central and eastern Rhodope are characterized by white mica cooling ages of 40–35 Ma with ages gradually decreasing to ca. 15 Ma near the eastern margin of the Strymon Valley. The Eo-Oligocene ages reflect the regional exhumation of the metamorphosed units to shallow crustal levels, with corresponding temperatures below ca. 350 °C, by 40–35 Ma. The younger cooling ages are attributed to the initiation and subsequent operation of the Strymon-Thasos detachment system since ca. 30 Ma. This study provides a crucial contribution to future regional tectonic models for the Rhodope region as it recognizes an early stage of development of the Strymon-Thasos detachment system, and has constrained the regional exhumation of the Rhodope metamorphic province since 40 Ma indicating that the regionally observed amphibolite facies metamorphism had terminated by this time.
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