Abstract
Zircon remains a preferred mineral for U-Pb geochronology due to its chemical durability. However, despite its robustness, zircon is susceptible to isotopic modifications at lower temperatures in the presence of fluids, leading to discordant U-Pb data. These discordant data, although often overlooked, can illuminate the timing of fluid-related disturbance. Here, we use Bayesian modelling via a Monte Carlo approach to investigate the timing of disturbances in the Arunta region of Central Australia. Renowned for its complex geological history, marked by multiple episodes of metamorphism and magmatism spanning >1.5 Ga, the Arunta region serves as an ideal case setting for understanding the interactions between geological processes and zircon U-Pb system integrity. By analysing discordant U-Pb data, we identify Pb loss events corresponding to major tectono-thermal episodes, notably the Petermann and the Alice Springs orogenies. These insights provide better temporal and spatial constraints on the complex tectono-metamorphic history of the Arunta region and underscore the utility of discordant U-Pb data for reconstructing detailed geological histories. These results advocate for a reassessment of discordant U-Pb data, promoting their use as a valuable tool for understanding fluid mobility in the crust.
| Original language | English |
|---|---|
| Article number | jgs2024111 |
| Number of pages | 12 |
| Journal | Journal of the Geological Society |
| Volume | 182 |
| Issue number | 4 |
| Early online date | 2 May 2025 |
| DOIs | |
| Publication status | Published - 7 Jul 2025 |
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