Abstract
Advances in field emission gun electron microprobes have led to significant gains in the beam power density and when analysis at high resolution is required then low voltages are often selected. The resulting beam power can lead to damage and this can be minimised by cooling the sample down to cryogenic temperatures allowing sub-micrometre imaging using a variety of spectrometers. Recent advances in soft X-ray emission spectrometers (SXES) offer a spectral tool to measure both chemistry and bonding and when combined with spectral cathodoluminescence the complementary techniques enable new knowledge to be gained from both mineral and materials. Magnesium and aluminium metals have been examined at both room and liquid nitrogen temperatures by SXES and the L-emission Fermi-edge has been observed to sharpen at the lower temperatures directly confirming thermal broadening of the X-ray spectra. Gains in emission intensity and resolution have been observed in cathodoluminescence for liquid nitrogen cooled quartz grains compared to ambient temperature quartz. This has enabled subtle growth features at quartz to quartz-cement boundaries to be imaged for the first time.
Cite
CITATION STYLE
MacRae, C. M., Wilson, N. C., Torpy, A., & Piane, C. D. (2018). Soft X-ray and cathodoluminescence measurement, optimisation and analysis at liquid nitrogen temperatures. In IOP Conference Series: Materials Science and Engineering (Vol. 304). Institute of Physics Publishing. https://doi.org/10.1088/1757-899X/304/1/012010
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