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Géochronologie U-Pb par ablation laser et ICP-MS (LA-ICP-MS ...

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Géochronologie U-<strong>Pb</strong> <strong>par</strong> <strong>ablation</strong> <strong>laser</strong> <strong>et</strong> <strong>ICP</strong>-<strong>MS</strong> (<strong>LA</strong>-<strong>ICP</strong>-<strong>MS</strong>): Principes, Complexités & Perspectives<br />

Oosthuysen & Burger (1973) The suitability of apatite as an age indicator by the uranium-lead m<strong>et</strong>hod.<br />

Earth and Plan<strong>et</strong>ary Science L<strong>et</strong>ters 18: 29-36.<br />

Pan Y (1997) Zircon- and monazite-forming m<strong>et</strong>amorphic reactions at Manitouwadge, Ontario. The<br />

Canadian Mineralogist 35: 105-118.<br />

Paqu<strong>et</strong>te JL & Tiepolo M (2007) High resolution (5 μm) U-Th-<strong>Pb</strong> isotope dating of monazite with<br />

excimer <strong>laser</strong> <strong>ablation</strong> (E<strong>LA</strong>)-<strong>ICP</strong>-<strong>MS</strong>. Chemical Geology 240: 222-237.<br />

Pidgeon RT, O'Neil JR & Silver RT (1966) Uranium and lead isotopic stability in a m<strong>et</strong>amict zircon<br />

under experimental hydrotherma conditions. Science 154: 1538-1540.<br />

Pidgeon RT, Nemchin AA & Hitchen GJ (1998) Internal structures of zircons from Archean granites<br />

from the Darling Range batholith: Implications for zircon stability and the interpr<strong>et</strong>ation of zircon U-<strong>Pb</strong><br />

ages. Contributions to Mineralogy and P<strong>et</strong>rology 132: 288-299.<br />

Pidgeon RT (1992) Recrystallisation of oscillatory zoned zircon - some geochronological and<br />

p<strong>et</strong>rological implications. Contributions to Mineralogy and P<strong>et</strong>rology 110: 463-472.<br />

Poitrasson F, Chenery S & Shepperd TJ (2000) Electron microprobe and <strong>LA</strong>-<strong>ICP</strong>-<strong>MS</strong> study of<br />

monazite hydrothermal alteration: implications for U-Th-<strong>Pb</strong>geochronology and nuclear ceramics.<br />

Geochimica Cosmochimica Acta 64: 3283-3297.<br />

Potrel A, Peucat JJ, Fanning CM, Auvray B, Burg JP & Caruba C (1996) 3.5 Ga old terranes in the<br />

West African Craton, Mauritania. Journal of the Geological Soci<strong>et</strong>y of London 153: 507-510.<br />

Rasmussen B (2005) Zircon growth in very low grade m<strong>et</strong>asedimentary rocks : evidence for zirconium<br />

mobility at c. 250°C. Contributions to Mineralogy and P<strong>et</strong>rology<br />

Rowley DB, Xue F, Tucker RD, Peng ZX, Baker J & Davis A (1997) Ages of ultrahigh pressure<br />

m<strong>et</strong>amorphism and protolith orthogneiss from the eastern Dabie Shan: U-<strong>Pb</strong> zircon geochronology.<br />

Earth and Plan<strong>et</strong>ary Science L<strong>et</strong>ters 151: 191-203.<br />

Rubatto D, Muntener O, Barnhoorn A & Gregory C (2008) Dissolution-reprecipitation of zircon at low<br />

temperature, high-pressure conditions (Lanzo Massif, Italy). American Mineralogist 93: 1519-1529.<br />

Rubatto D (2002) Zircon trace element geochemistry: <strong>par</strong>titioning with garn<strong>et</strong> and the link b<strong>et</strong>ween U-<br />

<strong>Pb</strong> ages and m<strong>et</strong>amorphism. Chemical Geology 184: 123-138.<br />

Rubin JN, Henry CD & Price JG (1989) Hydrothermal zircons and zircon overgrowths, Sierra Blanca<br />

Peaks, Texas. American Mineralogist 74: 865-869.<br />

Rubin JN, Henry CD & Price JG (1993) The mobility of zirconium and other immobile elements during<br />

hydrothermal alteration. Chemical Geology 110: 29-47.<br />

Santosh M, Wilde SA & Li JH (2007) Timing of Paleoproterozoic ultrahigh-temperature m<strong>et</strong>amorphism<br />

in the North China Craton: evidence from SHRIMP U-<strong>Pb</strong> zircon geochronology. Precambrian<br />

Research 159: 178-196.<br />

Schaltegger U (1997) Magma pulses in the Central Variscan Belt: episodic melt generation and<br />

emplacement during lithospheric thinning. Terra Nova 9: 242-245.<br />

Schärer U (1984) The effect of initial 230 Th disequilibrium on young U-<strong>Pb</strong> ages: the Makalu case. Earth<br />

and Plan<strong>et</strong>ary Science L<strong>et</strong>ters 67: 191-204.<br />

Schärer U & Allegre CJ (1982) Uranium-lead sytem in fragments of a single zircon grain. Nature 295:<br />

585-587.<br />

Schärer U & Labrousse L (2003) Dating the exhumation of UHP rocks and associated crustal melting<br />

in the Norwegian Caledonides. Contribution to Mineralogy and P<strong>et</strong>rology 144: 758-770.<br />

Schärer U, Kornprobst J, Beslier MO, Boillot G & Girardeau J (1995) Gabbro and related rock<br />

emplacement beneath rifting continental crust: U-<strong>Pb</strong> geochronological and geochemical constraints for<br />

the Galicia passive margin (Spain). Earth and Plan<strong>et</strong>ary Science L<strong>et</strong>ters 130: 187-200.<br />

Scherstén A, Arebäck H, Cornell D, Hoskin P, Aberg A & Armstrong R (2000) Dating mafic-ultramafic<br />

intrusions by ion-microprobing contact-melt zircon: examples from SW Sweden. Contributions to<br />

Mineralogy and P<strong>et</strong>rology 139: 115-125.<br />

Silver LT & Deutsch S (1963) Uranium-lead isotopic variations in zircon: a case study. Journal of<br />

Geology 71: 721-758.<br />

Smith HA & Barreiro B (1990) Monazite U-<strong>Pb</strong> dating of staurolite grade m<strong>et</strong>amorphism in pelitic<br />

schists. Contributions to Mineralogy and P<strong>et</strong>rology 105: 602-615.<br />

Snow JE & Schmidt G (1998) Proterozoic melting in the northern peridotite Massif, Zabargad Island:<br />

Os isotopic evidence. Terra Nova 11: 45-50.<br />

Stacey JS & Kramers JD (1975) Approximation of terrestrial lead isotope evolution by a two stage<br />

model. Earth and Plan<strong>et</strong>ary Science L<strong>et</strong>ters 6: 15-25.<br />

Storey C, Jeffries TE & Smith M (2006) Common lead-corrected <strong>laser</strong> <strong>ablation</strong> <strong>ICP</strong>-<strong>MS</strong> U-<strong>Pb</strong><br />

systematics and geochronology of titanite. Chemical Geology 227: 37-52.<br />

Telouk P <strong>et</strong> al. (2003) Preliminary results from a New 157 nm Laser Ablation <strong>ICP</strong>-<strong>MS</strong> instrument: new<br />

opportunities in the analysis of solid samples. Geostandards Newsl<strong>et</strong>ter 27: 5-11.<br />

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