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Colin MacRae

Publications and source records attributed to Colin MacRae.

2 recordsLinked to original sources

Correlating quantified cathodoluminescence spectra in jadeite with micro-scale color measurements in visible-near infrared reflectance spectrometry

Cultures throughout history have valued jadeite jade (hereinafter jade), a natural material assemblage composed predominately of the NaAl endmember pyroxene, jadeite (NaAlSi 2 O 6 ) that is prized for its mechanical properties and enticing coloration [ 1 , 2 ]. The geological setting for the formation of jadeite-rich rocks and associated complex geochemical phenomena is well documented in the literature [ 3-5 ]. Unlike single crystal gems, jade often contains a mixture of colors, but the stone is perhaps best known for exhibiting a range of green hues from pale green to blue green, and to deep green [ 1 , 6 ]. Efforts to classify jade color include qualitative matching to a set of reference color tiles, and less commonly, use of a more quantitative set of color perception values first established by International Commission on Illumination’s (CIE 1931) color space, which includes values for light-dark luminance level (L*), a green-red vector (a*), and a blue-yellow vector (b*) [ 7 , 8 ]. Two principal mechanisms have been identified as the cause of green coloration in jadeite: 1) the chemical state of impurity Fe, either 2+ or 3+, and 2) minor to trace Cr in the crystal structure [ 9 , 10 ]. Previous studies have associated Cr 3+ with cathodoluminescence (CL) spectral features in jadeite using point spectrometry, with more recent connections made via 2D CL spectrum imaging [ 11-13 ]. In this effort, we are seeking to establish whether Cr impurities are correlated with green coloration in jadeite using micro-scale (≤110 μm) visible-near infrared (VIS-NIR) reflectance spectrometry.

Microscopy and Microanalysis

Cathodoluminescence response of barite at room and liquid nitrogen temperatures

Rare earth element (REE) enrichment in the Elk Creek carbonatite, Nebraska USA, is comparable to ore grade enrichment in carbonatite-hosted REE deposits[1]. Petrographic examination of textures documents a complex history of crystallization, brecciation, recrystallization, oxidation, and near surface alteration. Barite (BaSO 4 ) is present in most units, including REE-enriched zones, such that it may provide important constraints on processes that lead to ore-grade enrichment of carbonatites. Samples containing barite from different temperature regimes within the deposit were chosen to study the cathodoluminescence (CL) response at room and liquid nitrogen (LN) temperatures to help determine the processes by which REEs were enriched within the deposit and possible contributions of REE to the CL response.

Conference Paper