Neodymium (Nd) stable isotopes have the potential to provide new constraints on a diverse range of geological processes from planetary formation and magmatic differentiation to weathering and ocean circulation. In this contribution, we present a technique for the high-precision measurement of Nd stable isotope ratios by thermal ionisation mass spectrometry (TIMS). We use a 145Nd–150Nd double spike (DS), composed of 28% 145Nd and 67% 150Nd, to correct for mass dependent fractionation resulting from sample preparation and mass spectrometry. Isotope ratios are expressed as δ146Nd which is the per mil deviation in the measured 146Nd/144Nd ratio relative to reference material JNdi-1. Repeated analyses show that an internal precision (n = 400 cyc...
International audienceThe Samarium-Neodymium isotope systematics relies on the radioactive decay of ...
The 147Sm-143Nd radioactive decay system has been widely used in the Earth sciences as a geochronome...
Isotope dilution thermal ionization mass spectrometry (ID-TIMS) is the standard technique used to ac...
Neodymium (Nd) stable isotopes have the potential to provide new constraints on a diverse range of g...
co-auteur étrangerInternational audienceTaking the example of Nd, we present a method based on a 4-m...
We report novel techniques allowing the measurement of Nd-isotope ratios with unprecedented accuracy...
International audienceIn this work, a High-Performance Liquid Chromatography (HPLC) separation follo...
Osmium stable isotopes provide a new, potentially powerful tool with which to investigate a diverse ...
International audienceHigh precision Sr and Nd isotopic measurements are of key importance in the fi...
International audienceRare earth elements (REEs) are considered emerging anthropogenic pollutants. A...
An improved method for precise and accurate in situ determination of Sm–Nd isotopes, with high spati...
A novel procedure has been developed for the measurement of 143Nd/144Nd isotope ratio in various ura...
A novel procedure has been developed for the measurement of 143Nd/144Nd isotope ratio in various ura...
International audienceThe Samarium-Neodymium isotope systematics relies on the radioactive decay of ...
The 147Sm-143Nd radioactive decay system has been widely used in the Earth sciences as a geochronome...
Isotope dilution thermal ionization mass spectrometry (ID-TIMS) is the standard technique used to ac...
Neodymium (Nd) stable isotopes have the potential to provide new constraints on a diverse range of g...
co-auteur étrangerInternational audienceTaking the example of Nd, we present a method based on a 4-m...
We report novel techniques allowing the measurement of Nd-isotope ratios with unprecedented accuracy...
International audienceIn this work, a High-Performance Liquid Chromatography (HPLC) separation follo...
Osmium stable isotopes provide a new, potentially powerful tool with which to investigate a diverse ...
International audienceHigh precision Sr and Nd isotopic measurements are of key importance in the fi...
International audienceRare earth elements (REEs) are considered emerging anthropogenic pollutants. A...
An improved method for precise and accurate in situ determination of Sm–Nd isotopes, with high spati...
A novel procedure has been developed for the measurement of 143Nd/144Nd isotope ratio in various ura...
A novel procedure has been developed for the measurement of 143Nd/144Nd isotope ratio in various ura...
International audienceThe Samarium-Neodymium isotope systematics relies on the radioactive decay of ...
The 147Sm-143Nd radioactive decay system has been widely used in the Earth sciences as a geochronome...
Isotope dilution thermal ionization mass spectrometry (ID-TIMS) is the standard technique used to ac...