Rapid development of spiral garnets during subduction zone metamorphism revealed from high-resolution Sm-Nd garnet geochronology

Author:

Farrell Thomas P.12ORCID,Aerden Domingo3,Baxter Ethan F.1,Starr Paul G.1,Williams Mike L.4

Affiliation:

1. 1Department of Earth and Environmental Sciences, Boston College, Chestnut Hill, Massachusetts 02467, USA

2. 2Department of Geosciences, Boise State University, Boise, Idaho 83702, USA

3. 3Departamento de Geodinámica, Universidad de Granada, 18071 Granada, Spain

4. 4Department of Geosciences, University of Massachusetts, Amherst, Massachusetts 01003, USA

Abstract

Abstract Multiple studies have applied zoned garnet geochronology to place temporal constraints on the rates of metamorphism and deformation during orogenesis. We report new high-resolution isotope dilution–thermal ionization mass spectrometry Sm-Nd isochron ages on concentric growth zones from microstructurally and thermodynamically characterized garnets from the Betic Cordillera, southern Spain. Our ages for the garnet core (13.64 ± 0.31 Ma), mantle (13.41 ± 0.37 Ma), and rim (13.34 ± 0.45 Ma) indicate rapid garnet growth and are consistent with published garnet ages interpreted to reflect high-pressure metamorphism in the region. Thermodynamic analysis indicates garnets grew during subduction at ~1.5–2.0 GPa and 570–600 °C. The core to rim duration of spiral garnet growth was just a few hundred thousand years. While other zoned garnet studies have shown similar rapid growth in subduction zone settings, this is the first documentation of such rapid growth of a spiral garnet. Combining this garnet growth duration with the magnitude of spiral inclusion trail curvature, we compute a strain rate of ~10−13 s−1, an order of magnitude faster than all previous spiral garnet studies. We interpret that these spiral garnets recorded a rapid pulse of deformation and strain during the final stages of subduction and incipient exhumation.

Publisher

Geological Society of America

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1. Bayesian frameworks for integrating petrologic and geochronologic data;Earth and Planetary Science Letters;2024-11

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