The Crystallinity of Apatite in Contact with Metamict Pyrochlore from the Silver Crater Mine, ON, Canada
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[1] Robert F. Martin,et al. A Silicocarbonatitic Melt and Spinel-Bearing Dunite of Crustal Origin at the Parker Phlogopite Mine, Notre-Dame-du-Laus, Quebec, Canada , 2019, Minerals.
[2] Robert F. Martin,et al. Silicocarbonatitic melt inclusions in fluorapatite from the Yates prospect, Otter Lake, Québec: Evidence of marble anatexis in the central metasedimentary belt of the Grenville Province , 2019, The Canadian Mineralogist.
[3] J. Chiarenzelli,et al. Age and Origin of Silicocarbonate Pegmatites of the Adirondack Region , 2019, Minerals.
[4] R. McDougall. Mineral Highlights from the Bancroft Area, Ontario, Canada , 2019, Rocks & Minerals.
[5] J. Vervoort,et al. Constraints on the timing and duration of orogenic events by combined Lu–Hf and Sm–Nd geochronology: An example from the Grenville orogeny , 2018, Earth and Planetary Science Letters.
[6] R. Ewing,et al. In situ TEM observation of alpha-particle induced annealing of radiation damage in Durango apatite , 2017, Scientific Reports.
[7] C. Rüssel,et al. Experimental evidence concerning the significant information depth of electron backscatter diffraction (EBSD). , 2017, Ultramicroscopy.
[8] C. Rüssel,et al. An experimental viewpoint on the information depth of EBSD. , 2016, Scanning.
[9] J. Pasteris,et al. A Technological Gem: Materials, Medical, and Environmental Mineralogy of Apatite , 2015 .
[10] Yan-jiao Gao,et al. The role of Th-U minerals in assessing the performance of nuclear waste forms , 2014, Mineralogical Magazine.
[11] Robert F. Martin,et al. Ampandrandava and similar phlogopite deposits in southern Madagascar: Derivation from a silicocarbonatitic melt of crustal origin , 2014 .
[12] D. Günther,et al. Determination of Reference Values for NIST SRM 610–617 Glasses Following ISO Guidelines , 2011 .
[13] H. S. Spence. Phosphate in Canada , 2011 .
[14] J. Price,et al. Using pegmatite geochronology to constrain temporal events in the Adirondack Mountains , 2011 .
[15] John M. Hughes,et al. Crystal chemistry of Th in fluorapatite , 2011 .
[16] John M. Hughes,et al. Site preference of U and Th in Cl, F, and Sr apatites , 2009 .
[17] G. Kniewald,et al. NIOBOAESCHYNITE-(Y), A NEW MEMBER OF THE AESCHYNITE GROUP FROM THE BEAR LAKE DIGGINGS, HALIBURTON COUNTY, ONTARIO, CANADA , 2008 .
[18] E. Oelkers,et al. Phosphates and Nuclear Waste Storage , 2008 .
[19] W. J. Weber,et al. Electron-beam induced recrystallization in amorphous apatite , 2007 .
[20] T. Williams,et al. The Photon Detector and the Variable-Pressure Scanning Electron Microscope An Alternative Method for Cathodoluminescence Imaging of Geologic Materials , 2006, Microscopy and Microanalysis.
[21] D. Joyce. Calcite Vein-Dikes of the Grenville Geological Province Ontario, Canada , 2006 .
[22] F. Gauthier-Lafaye,et al. Isotopic evidence for trapped fissiogenic REE and nucleogenic Pu in apatite and Pb evolution at the Oklo natural reactor , 2004 .
[23] J. Krupa,et al. Competition between disorder creation and annealing in fluoroapatite nuclear waste forms , 2002 .
[24] Rodney C. Ewing,et al. Phosphates as Nuclear Waste Forms , 2002 .
[25] Rodney C. Ewing,et al. Radiation-Induced Amorphization , 2000 .
[26] S. Guggenheim,et al. Crystal structures of near-end-member phlogopite at high temperatures and heat-treated Fe-rich phlogopite; the influence of the O,OH,F site , 1999 .
[27] S. Zinkle,et al. Effects of dose rate and temperature on the crystalline-to-metamict transformation in the ABO 4 orthosilicates , 1999 .
[28] W. J. Weber,et al. The kinetics of alpha-decay-induced amorphization in zircon and apatite containing weapons-grade plutonium or other actinides , 1997 .
[29] R. Bros,et al. Occurrence of Pu and Fissiogenic REE in Hydrothermal Apatites from the Fossil Nuclear Reactor 16 at Oklo (Gabon) , 1996 .
[30] R. Ewing,et al. Geochemical alteration of pyrochlore group minerals: Betafite subgroup , 1996 .
[31] W. McDonough,et al. The composition of the Earth , 1995 .
[32] W. J. Weber,et al. In situ observation of radiation induced amorphization of crystals with apatite structure , 1993 .
[33] K. H. Poulsen. Bedrock Geology of Ontario , 1992 .
[34] M. Owen. Radiation-damage halos in quartz , 1988 .
[35] R. Ewing,et al. The Metamict State , 1987 .
[36] R. Ewing,et al. The metamict state: Implications for radiation damage in crystalline waste forms☆☆☆ , 1980 .
[37] D. Hogarth. Classification and nomenclature of the pyrochlore group , 1977 .
[38] H. Taylor,et al. Oxygen and carbon isotope studies of carbonatites from the Laacher See district, West Germany and the Alno district, Sweden. , 1967 .
[39] Robert A. Gulbrandsen,et al. Carbonate-bearing apatite from Faraday Township, Ontario, Canada , 1966 .
[40] I. Hayase. THE DEVELOPMENT OF PLEOCHROIC HALOES AND THE ALPHA RADIOACTIVITY OF THE NUCLEUS MINERALS , 1955 .