A GUPIX-based approach to interpreting the PIXE-plus-XRF spectra from the Mars Exploration rovers: II geochemical reference materials
A detailed examination of the original calibration data for the laboratory version of the Mars Exploration Rover alpha particle X-ray spectrometer is undertaken to ascertain if the results from a suite of certified geochemical reference materials (GRMs) agree with the APXS calibration based upon hom...
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Published in | Nuclear instruments & methods in physics research. Section B, Beam interactions with materials and atoms Vol. 269; no. 1; pp. 69 - 81 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
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Elsevier B.V
2011
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ISSN | 0168-583X 1872-9584 |
DOI | 10.1016/j.nimb.2010.09.014 |
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Abstract | A detailed examination of the original calibration data for the laboratory version of the Mars Exploration Rover alpha particle X-ray spectrometer is undertaken to ascertain if the results from a suite of certified geochemical reference materials (GRMs) agree with the APXS calibration based upon homogeneous standards which was established in the previous paper. Various discrepancies, some of them large, are observed for specific elements in specific rock types, and it is argued on the basis of X-ray diffraction analyses of the GRMS that these are caused by the mineral phase structure of the rocks. Elements present in accessory mineral phases can be subject to very large errors, necessitating caution in interpretation of trace element results from the APXS. Some of the discrepancies can be dealt with by developing sub-calibrations, each of which is “tuned” to a specific rock type. This approach has the potential to provide more accurate APXS analysis of unknown rocks than a calibration scheme based upon a simple averaging over many rock types within a GRM suite, or over a mix of rock and homogeneous standards. It also has the potential to measure the content of mineralogically bound water provided that a means of determining the distance from sample to detector is available. |
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AbstractList | A detailed examination of the original calibration data for the laboratory version of the Mars Exploration Rover alpha particle X-ray spectrometer is undertaken to ascertain if the results from a suite of certified geochemical reference materials (GRMs) agree with the APXS calibration based upon homogeneous standards which was established in the previous paper. Various discrepancies, some of them large, are observed for specific elements in specific rock types, and it is argued on the basis of X-ray diffraction analyses of the GRMS that these are caused by the mineral phase structure of the rocks. Elements present in accessory mineral phases can be subject to very large errors, necessitating caution in interpretation of trace element results from the APXS. Some of the discrepancies can be dealt with by developing sub-calibrations, each of which is “tuned” to a specific rock type. This approach has the potential to provide more accurate APXS analysis of unknown rocks than a calibration scheme based upon a simple averaging over many rock types within a GRM suite, or over a mix of rock and homogeneous standards. It also has the potential to measure the content of mineralogically bound water provided that a means of determining the distance from sample to detector is available. |
Author | Campbell, J.L. Perrett, G.M. McDonald, A.M. Taylor, S.M. |
Author_xml | – sequence: 1 givenname: J.L. surname: Campbell fullname: Campbell, J.L. email: icampbel@uoguelph.ca organization: Guelph-Waterloo Physics Institute, University of Guelph, Guelph, Ontario, Canada N1G 2W1 – sequence: 2 givenname: A.M. surname: McDonald fullname: McDonald, A.M. organization: Department of Earth Sciences, Laurentian University, Sudbury, Ontario, Canada P3E 2E6 – sequence: 3 givenname: G.M. surname: Perrett fullname: Perrett, G.M. organization: Guelph-Waterloo Physics Institute, University of Guelph, Guelph, Ontario, Canada N1G 2W1 – sequence: 4 givenname: S.M. surname: Taylor fullname: Taylor, S.M. organization: Department of Atmospheric and Oceanic Sciences, McGill University, Montréal, Québec, Canada H3A 2T5 |
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Keywords | X-ray fluorescence analysis Alpha particle X-ray spectrometer Calibration Geochemical reference materials Particle-induced X-ray emission analysis |
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SubjectTerms | Alpha particle X-ray spectrometer Calibration Certification testing Geochemical reference materials Geochemistry Mars exploration Minerals Particle-induced X-ray emission analysis Reference materials Rock X-ray fluorescence analysis X-rays |
Title | A GUPIX-based approach to interpreting the PIXE-plus-XRF spectra from the Mars Exploration rovers: II geochemical reference materials |
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