International audienceThe capabilities of an infrared (IR) Ti:sapphire femtosecond laser (approximate to 800 nm) to ablate and analyze geomaterials such as monazite, zircon and synthetic glass reference materials is evaluated, with emphasis on U/Pb ratio determinations useful for dating accessory minerals in rocks. We particularly discuss the influence of pulse duration ( respectively 60, 200, 350, 500, 670, 830, 2000 and 3000 fs) on the internal precision ( 2 min ablation), reproducibility over two weeks and accuracy of quadrupole ICP-MS measurements. The best results for all these criteria are obtained when using the shortest pulse duration ( 60 fs). It was found that internal precision and reproducibility were improved by a factor of 3 a...
In this study we used LA-ICP-MS (laser ablation–inductively coupled plasma–mass spectrometry) to det...
U–Pb geochronology using laser ablation ICP–MS is a fairly recently introduced technique and thus fa...
Laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS) has been applied to the chem...
International audienceA commercial femtosecond laser system operating at its fundamental wavelength ...
cited By 14International audienceA low energy and high repetition rate infrared femtosecond laser sy...
Non-stoichiometric sampling and down-hole fractionation contribute significantly to the uncertainty ...
We studied the influence of pulse energy (E-0) and pulse width (tau) of Near Infra Red femtosecond L...
A novel approach to laser ablation Pb/U geochronology is presented that allows accurate determinatio...
This paper reports new developments in in situ U–Pb zircon geochronology using 266 and 213 nm laser ...
This contribution presents a review of the recent developments in laser ablation inductively coupled...
This study presents U–Pb isotopic results from the mineral zircon measured by nanosecond laser ablat...
cited By 10International audienceRecent advances in the field of ultra short pulse laser (femtosecon...
International audienceSample preparation is a crucial point for quantitative multi-elemental analses...
U-Pb geochronology using laser ablation ICP-MS is a fairly recently introduced technique and thus fa...
In this study we used LA-ICP-MS (laser ablation–inductively coupled plasma–mass spectrometry) to det...
U–Pb geochronology using laser ablation ICP–MS is a fairly recently introduced technique and thus fa...
Laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS) has been applied to the chem...
International audienceA commercial femtosecond laser system operating at its fundamental wavelength ...
cited By 14International audienceA low energy and high repetition rate infrared femtosecond laser sy...
Non-stoichiometric sampling and down-hole fractionation contribute significantly to the uncertainty ...
We studied the influence of pulse energy (E-0) and pulse width (tau) of Near Infra Red femtosecond L...
A novel approach to laser ablation Pb/U geochronology is presented that allows accurate determinatio...
This paper reports new developments in in situ U–Pb zircon geochronology using 266 and 213 nm laser ...
This contribution presents a review of the recent developments in laser ablation inductively coupled...
This study presents U–Pb isotopic results from the mineral zircon measured by nanosecond laser ablat...
cited By 10International audienceRecent advances in the field of ultra short pulse laser (femtosecon...
International audienceSample preparation is a crucial point for quantitative multi-elemental analses...
U-Pb geochronology using laser ablation ICP-MS is a fairly recently introduced technique and thus fa...
In this study we used LA-ICP-MS (laser ablation–inductively coupled plasma–mass spectrometry) to det...
U–Pb geochronology using laser ablation ICP–MS is a fairly recently introduced technique and thus fa...
Laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS) has been applied to the chem...