This dataset comprises 1785 apatite fission track (AFT) analyses from mostly Archaean-Palaeozoic igneous rocks, or their metamorphic equivalent, from across the Australian continent. Information provided in this dataset include sample locations, lithologies, AFT age determinations, and mean confined track length measurements. These analyses were first described in Kohn et al. (2002) and Gleadow et al. (2002), and provide critical insights into the low-temperature tectono-thermal evolution of the Australian upper crust over the last 300 million years
This item is only available electronically.Multi–method thermochronological data are presented for 1...
We determined the fission track age of Transantarctic Mountain microtektites. The plateau method yie...
Apatite fission-track data for modeling. Datasets include single-grain ages and individual track len...
Fission track ages were obtained from two apatite samples from Coronation Island near the Antarctic ...
The apatite U-Pb technique has recently been developed (Chew et al. 2014) and provides a suitable th...
From the viewpoint of isotope geochronology, studies of the Paleozoic geological history of Australi...
This paper presents fission-track ages and confined track-length measurements from detrital apatites...
International audienceAccording to their respective temperature sensitivities, Apatite (U-Th)/He (AH...
The apatite (U - Th)/He and fission track thermochronometers are combined to constrain the Mesozoic ...
The results of Apatite Fission Track (AFT) analysis for Cretaceous, Paleozoic and Precambrian boreho...
International audienceA compilation of fission track data is presented here to show from where fissi...
Available online 2 August 2023This study presents in-situ U–Pb, Lu–Hf, and Sm–Nd isotopic data for d...
Fission-track thermochronologic data have the potential to reveal aspects of the timing, rate, and s...
Despite the prolific hydrocarbon and geothermal potential within the central Australian Cooper-Eroma...
In this project apatite fission track and (U-T)/He thermochronometers are used to determine the cool...
This item is only available electronically.Multi–method thermochronological data are presented for 1...
We determined the fission track age of Transantarctic Mountain microtektites. The plateau method yie...
Apatite fission-track data for modeling. Datasets include single-grain ages and individual track len...
Fission track ages were obtained from two apatite samples from Coronation Island near the Antarctic ...
The apatite U-Pb technique has recently been developed (Chew et al. 2014) and provides a suitable th...
From the viewpoint of isotope geochronology, studies of the Paleozoic geological history of Australi...
This paper presents fission-track ages and confined track-length measurements from detrital apatites...
International audienceAccording to their respective temperature sensitivities, Apatite (U-Th)/He (AH...
The apatite (U - Th)/He and fission track thermochronometers are combined to constrain the Mesozoic ...
The results of Apatite Fission Track (AFT) analysis for Cretaceous, Paleozoic and Precambrian boreho...
International audienceA compilation of fission track data is presented here to show from where fissi...
Available online 2 August 2023This study presents in-situ U–Pb, Lu–Hf, and Sm–Nd isotopic data for d...
Fission-track thermochronologic data have the potential to reveal aspects of the timing, rate, and s...
Despite the prolific hydrocarbon and geothermal potential within the central Australian Cooper-Eroma...
In this project apatite fission track and (U-T)/He thermochronometers are used to determine the cool...
This item is only available electronically.Multi–method thermochronological data are presented for 1...
We determined the fission track age of Transantarctic Mountain microtektites. The plateau method yie...
Apatite fission-track data for modeling. Datasets include single-grain ages and individual track len...