Skip to main content

Advertisement

Springer Nature Link
Log in
Menu
Find a journal Publish with us Track your research
Search
Saved research
Cart
  1. Home
  2. Contributions to Mineralogy and Petrology
  3. Article

Constraining the prograde and retrograde P-T-t path of Eocene HP rocks by SHRIMP dating of different zircon domains: inferred rates of heating, burial, cooling and exhumation for central Rhodope, northern Greece

  • Article
  • Published: 01 June 1999
  • Volume 135, pages 340–354 (1999)
  • Cite this article

Access provided by ICE Institution of Civil Engineers

Download PDF
Save article
View saved research
Contributions to Mineralogy and Petrology Aims and scope Submit manuscript
Constraining the prograde and retrograde P-T-t path of Eocene HP rocks by SHRIMP dating of different zircon domains: inferred rates of heating, burial, cooling and exhumation for central Rhodope, northern Greece
Download PDF
  • Anthi Liati1 &
  • Dieter Gebauer1 
  • 653 Accesses

  • 199 Citations

  • Explore all metrics

Abstract

Ion microprobe (SHRIMP) dating was carried out on different zircon domains from metamorphic rocks of the HP-HT terrane of central Rhodope, northern Greece, to constrain the timing of prograde and retrograde stages within a single tectono-metamorphic cycle. A well determined P-T-t(relative) path for the metamorphic rocks of this terrane was used as a petrological basis for the geochronological investigations. Ion microprobe work was assisted by cathodoluminescence (CL) images of the zircon crystals. The geochronological results revealed that Hercynian continental crust was subducted during the Eocene. Several stages of the Eocene tectono-metamorphic cycle – including both the prograde and retrograde parts of the P-T path above ca 300 °C, 0.3 GPa – were dated using zircons from the following rock types: (1) A deformed quartz vein probably formed at ca 300 °C, 0.3 GPa. Zircons in this vein precipitated from a hydrothermal fluid; they yielded an age of 45.3 ± 0.9 Ma which corresponds to the time of a low-T prograde stage of metamorphism. (2) In kyanite eclogites, zircons were entirely reset during eclogite-facies metamorphism. Resetting was very probably enhanced by the presence of fluids derived by H2O liberating reactions close to the P-peak. They yielded an age of 42.2 ± 0.9 Ma. (3) Orthogneisses surrounding the kyanite eclogites contained zircons with magmatic oscillatory zoned cores, which yielded Hercynian ages of 294 ± 8 Ma (age of granitic protolith formation), whereas CL-bright, metamorphic rims yielded, like the eclogite zircons, ages of 42.0 ± 1.1 Ma. Therefore, both the eclogites and orthogneisses are interpreted to have approached maximum depth at around 42 Ma. (4) In a leucosome of a migmatized orthogneiss, oscillatory zoned zircons yielded an age of 40.0 ± 1.0 Ma. At this time the rocks reached maximum temperatures during early decompression. (5) A late pegmatite crosscutting the schistosity of amphibolites contained oscillatory zoned zircons that yielded a crystallization age of 36.1 ± 1.2 Ma. Thus, the whole tectono-metamorphic cycle above ca 300 °C, 0.3 GPa lasted from 45.3 ± 0.9 Ma to 36.1 ± 1.2 Ma, that is 9.2 Ma with an extreme error value of 2.1 Ma. Based on combined SHRIMP and petrological data, the average rates of heating and burial during subduction (above ca 300 °C, 0.3 GPa) are >94 °C/Ma and >15 mm/a, respectively. Rates of cooling and exhumation (also above 300 °C, 0.3 GPa) are calculated to be >128° C/Ma and >7.7 mm/a. The Eocene age of metamorphism in central Rhodope implies that the terrane of, at least, central Rhodope and the Cyclades very probably was part of the same continental crust.

Article PDF

Download to read the full article text

Similar content being viewed by others

Decoding a protracted zircon geochronological record in ultrahigh temperature granulite, and persistence of partial melting in the crust, Rogaland, Norway

Article 14 March 2018

Age Ranges of Zircons in the Kamchatka–Koryak Region (according to Zircon Geochronology)

Article 06 December 2024

Metamorphic conditions and structural evolution of the Kesebir-Kardamos dome: Rhodope metamorphic complex (Greece-Bulgaria)

Article 01 March 2017

Explore related subjects

Discover the latest articles, books and news in related subjects, suggested using machine learning.
  • Geodynamics
  • Geology
  • Historical Geology
  • Petrology
  • Precambrian Geology
  • Stratigraphy
  • Tectonic Processes and Metamorphic Evolution in Subduction Zones

Author information

Authors and Affiliations

  1. Institut für Isotopengeochemie und Mineralische Rohstoffe, ETH-Zentrum, Sonneggstrasse 5, CH-8092, Zürich, Switzerland E-mail: liati@erdw.ethz.ch, Switzerland

    Anthi Liati & Dieter Gebauer

Authors
  1. Anthi Liati
    View author publications

    Search author on:PubMed Google Scholar

  2. Dieter Gebauer
    View author publications

    Search author on:PubMed Google Scholar

Additional information

Received: 5 October 1998 / Accepted: 18 January 1999

Rights and permissions

Reprints and permissions

About this article

Cite this article

Liati, A., Gebauer, D. Constraining the prograde and retrograde P-T-t path of Eocene HP rocks by SHRIMP dating of different zircon domains: inferred rates of heating, burial, cooling and exhumation for central Rhodope, northern Greece. Contrib Mineral Petrol 135, 340–354 (1999). https://doi.org/10.1007/s004100050516

Download citation

  • Published: 01 June 1999

  • Issue date: June 1999

  • DOI: https://doi.org/10.1007/s004100050516

Share this article

Anyone you share the following link with will be able to read this content:

Sorry, a shareable link is not currently available for this article.

Provided by the Springer Nature SharedIt content-sharing initiative

Keywords

  • Zircon
  • Quartz Vein
  • Kyanite
  • Zircon Crystal
  • Contrib Mineral Petrol

Advertisement

Search

Navigation

  • Find a journal
  • Publish with us
  • Track your research

Footer Navigation

Discover content

  • Journals A-Z
  • Books A-Z
  • Subjects A-Z

Publish with us

  • Journal finder
  • Publish your research
  • Language editing
  • Open access publishing

Products and services

  • Our products
  • Librarians
  • Societies
  • Partners and advertisers

Our brands

  • Springer
  • Nature Portfolio
  • BMC
  • Palgrave Macmillan
  • Apress
  • Discover

Corporate Navigation

  • Your US state privacy rights
  • Accessibility statement
  • Terms and conditions
  • Privacy policy
  • Help and support
  • Legal notice
  • Cancel contracts here

172.71.28.175

ICE Institution of Civil Engineers (3000167333) - Institution of Civil Engineers Library (2000027800)

Springer Nature

© 2026 Springer Nature