Apatite can host significant levels of trace elements, including REE, within its crystal lattice, making it particularly useful for deciphering geological events and processes. This study employs hyperspectral cathodoluminescence (CL) and in situ microchemical techniques to identify and characterize various generations of apatite occurring in the phoscorites, carbonatites, and fenites of the Gifford Creek Carbonatite Complex (GCCC), Western Australia. Hyperspectral CL revealed that apatite crystals in all samples have complex internal zoning, including multiple distinct generations, with zones of relatively bright CL generally having more complex spectra compared to darker CL zones. Most of the CL spectra have prominent sharp peaks at simil...
Trace element signatures in apatite are used to study hydrothermal processes due to the ability of t...
International audienceNatural apatite can show complex chemical compositions shifting the general fo...
The apatite crystal structure-A5(TO4)3X-allows for complex substitutions of various minor and trace ...
t Apatite can host significant levels of trace elements, including REE, within its crystal lattice,...
The Siilinjärvi phosphate deposit (Finland) is hosted by an Archean carbonatite complex. The main bo...
Apatite samples from rare-metal mineralization were investigated by a combination of cathodolumi-nes...
Hyperspectral cathodoluminescence (CL), geochemical, and geochronological characterization of a seri...
Over 700 apatite grains from a range of rock types have been analysed by laser-ablation microprobe I...
Apatite-group phosphates are nearly ubiquitous in carbonatites, but our understanding of these miner...
Carbonatite intrusive complexes are important hosts for Rare Earth Elements (REE) deposits and are c...
The Gifford Creek Carbonatite Complex (GCCC), Western Australia contains a diverse suite of alkaline...
International audienceA new Raman spectroscopic technique has been refined to more efficiently previ...
The Tundulu and Kangankunde carbonatite complexes in the Chilwa Alkaline Province, Malawi, contain l...
Iron-oxide-copper-gold (IOCG) mineralization is expressed in various forms across some 700 km of the...
Early Silurian low-pressure (200 μm in enclaves in migmatites). Many apatite grains are composite, w...
Trace element signatures in apatite are used to study hydrothermal processes due to the ability of t...
International audienceNatural apatite can show complex chemical compositions shifting the general fo...
The apatite crystal structure-A5(TO4)3X-allows for complex substitutions of various minor and trace ...
t Apatite can host significant levels of trace elements, including REE, within its crystal lattice,...
The Siilinjärvi phosphate deposit (Finland) is hosted by an Archean carbonatite complex. The main bo...
Apatite samples from rare-metal mineralization were investigated by a combination of cathodolumi-nes...
Hyperspectral cathodoluminescence (CL), geochemical, and geochronological characterization of a seri...
Over 700 apatite grains from a range of rock types have been analysed by laser-ablation microprobe I...
Apatite-group phosphates are nearly ubiquitous in carbonatites, but our understanding of these miner...
Carbonatite intrusive complexes are important hosts for Rare Earth Elements (REE) deposits and are c...
The Gifford Creek Carbonatite Complex (GCCC), Western Australia contains a diverse suite of alkaline...
International audienceA new Raman spectroscopic technique has been refined to more efficiently previ...
The Tundulu and Kangankunde carbonatite complexes in the Chilwa Alkaline Province, Malawi, contain l...
Iron-oxide-copper-gold (IOCG) mineralization is expressed in various forms across some 700 km of the...
Early Silurian low-pressure (200 μm in enclaves in migmatites). Many apatite grains are composite, w...
Trace element signatures in apatite are used to study hydrothermal processes due to the ability of t...
International audienceNatural apatite can show complex chemical compositions shifting the general fo...
The apatite crystal structure-A5(TO4)3X-allows for complex substitutions of various minor and trace ...