Other EPMA-related research by John Fournelle and colleagues
Updated as of 8/24/19
2019
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Solving the Iron Quantification Problem in Low kV EPMA: An essential step toward improved analytical spatial resolution in electron probe microanalysis. Olivines (Am Min Journal article) |
2019
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Quantitative measurement of iron-silicides by EPMA using the Fe Lα and Lβ X-ray lines: a new twist to an old approach (M&M Journal article) |
2019
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An EPMA Study of the Soft Fe La-L X-ray lines in Fe-silicide, Olivine and Fe-sulfide Minerals by SXES and WDS (M&M) |
2019
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Absolute calibration curves for the quantification of Fe by EPMA using the soft La-Lb X-ray lines (MAS Topical Conf) |
2019
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Modern thin film analysis by electron probe microanalysis (MAS Topical Conf) |
2019
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Seeking compositional truth: EDS vs WDS to evaluate new standard materials (MAS Topical Conf) |
2019
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Standard reference materials—Critical elements for microanalysis (WDS and EDS): A cautionary tale, and a hopeful future (MAS Topical Conf) |
2018
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A Study on the Change of the Fe Lα Mass Absorption Coefficients and Fluorescence Yields in Iron Silicide Samples by EPMA (M&M) |
2018
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Iron La and Lb X-ray lines: A comparison of EPMA experimental measurements and theoretical calculations (M&M) |
2017
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Quantitative electron probe microanalysis of Fe at low accelerating voltage using the La and Lb X-ray lines (M&M) |
2017
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Analytical spatial resolution in EPMA: what is it and how can it be estimated? (M&M) |
2017
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2017, Minerals from the Kakanui volcanic breccia: a 2017 look at geological reference materials for EPMA (M&M) |
2017
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Improving spatial resolution for quantitative microanalysis by SEM-EDS using lower accelerating voltage (JAGU-AGU) |
2017
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Experiments with low voltage FE-EPMA: toward achieving improved analytical spatial resolution (AMAS) |
2016
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Low voltage EPMA: experiments on a new frontier in microanalysis – lateral spatial resolution (Journal article) |
2015
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Comparing the Intensities and Spectral Resolution Achieved by Wavelength-Dispersive Spectrometers on Microprobes and SEMs (M&M) |
2015
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Non-sequential Spectral Acquisitions and Data Reconstruction to Remove Time Dependent Effects from X-ray Spectra (Journal article) |
2015
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2015, Survey for Fe-Si in Apollo 16 Regolith Sample 61501,22 (M&M) |
2014
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Experiments with Low Voltage Field Emission EPMA (AGU) |
2014
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Soft X-Ray EPMA Analyses of Extremely Reduced phases from Apollo 16 regolith: problems and solutions for sub-micron analysis (M&M) |
2013
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Electron Microprobe Analysis of Hf in Zircon: Suggestions for Improved Accuracy of a Difficult Measurement (AGU) |
2013
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Quantitative EPMA of Nano-Phase Iron-Silicides in Apollo 16 Lunar Regolith (AGU) |
2013
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NBS K409: A potential reference material for sub-micron X-ray resolution by EPMA (AGU) |
2013
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Random spectrometer motion for removal of time dependent artifacts in spectroscopy (M&M) |
2013
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Low keV electron probe analysis of iron silicides (EMAS) |
2013
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Low voltage soft x-ray EPMA of Fe-Si compounds (Journal article) |
2012
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An inter-laboratory comparison of EPMA analysis of alloy steel at low voltage (Journal article) |
2012
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Complications with Using Natural Minerals as Microbeam Standards: Pyroxenes (AGU) |
2012
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Low Voltage EPMA of Lunar, Terrestrial, and Synthetic Fe-Si Compounds (AGU) |
2012
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Complexities of using natural minerals as standard reference materials: personal experiences from a geological microprobe lab (MAS Topical Conf) |
2012
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Toward a quartz sandstone SEM-CL intensity imaging reference material (MAS Topical Conf) |
2012
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Synthesis and characterization of Ti-Y-Zr-Nb-Hf-Ta-La-Nd-Sm-Gd-Dy-Er-Yb-Lu doped haploandesite glass reference materials (MAS Topical Conf ) |
2012
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Soft X-ray EPMA of nanophase lunar Fe-Si compounds (M&M) |
2012
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High-resolution Al and Mg Ka emissions of some minerals (EU Xray Spect Conf) |
2011
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Peak shift in Mg Ka in EPMA: high resolution x-ray spectrometer results for silicate minerals (AGU) |
2011
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An investigation of “San Carlos Olivine”: comparing USNM-distributed material with commercially available material (M&M) |
2010
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An Electron Microprobe Study of Synthetic Aluminosilicate Garnets, EOS abstracts (AGU) |
2010
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Development and characterization of a Ti-doped haploandesite glass standard for Ti-in-zircon geothermometry (AGU) |
2010
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PENEPMA, a useful tool in intermetallic phase ID along the joint interface of al-Mg dissimilar metal friction-stir welds (M&M) |
2009
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Notes on some crystals of San Carlos olivine and EPMA standards (AGU) |
2009
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Evaluating atmospheric particles – using EDS, WDS and EBSD (MAS TC) |
2008
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SEM microanalysis of particles: concerns and suggestions (AGU) |
2008
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Al-Ir compounds and the problem of light element-heavy element matrix corrections in EPMA: application of PENEMPA Monte Carlo Modeling (M&M) |
2007
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Peak shifts in Al, Mg, Si and Na in geologically important materials (AGU) |
2007
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Problems in trace element EPMA: modeling secondary fluorescence with PENEPMA (AGU) |
2007 |
Large errors in electron microprobe analysis of Laphamite due to uncertainties in ZAF correction parameters (AGU) |
2007 |
The problem of secondary fluorescence in EPMA in the application of the Ti-in-zircon geothermometer and the utility of PENEPMA Monte Carlo Program (M&M) |
2006
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Electron microprobe techniques for use in tephrochronological analyses (AGU) |
2006
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Software useful for training students in electron probe microanalysis (GSA) |
2006 |
Al and Mg Ka peak shifts in common silicate and oxide minerals: relevance to achieving the goal of 1% accuracy in EPMA (M&M) |
2006 |
Core community specifications for electron microprobe operating systems: software, quantity control, and data management issues (M&M) |
2006 |
The significance of refractive index “K” values of 45 to 200 Å 2d LSMs, or, Why your long wavelength peak markers may not line up correctly (M&M) |
2006
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Silicate Peak Shifts, Spectrometer Peaking Issues and Standard/Specimen Size Discrepancies in EPMA: 3 Bumps in the Road to the Goal of 1% Accuracy (AGU) |
2005
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Secondary fluorescence corrections for EPMA: PENELOPE MC simulations (M&M) |
2005 |
Al and Si quantitation in routine silicate epma: Maybe not so routine (Goldschmidt) |
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