Early stages of the Miocene magmatic arc and related hydrothermal alteration at Valle Hermoso, South Central Andes (35°07′S, 70°17′W)
暂无分享,去创建一个
P. Sruoga | B. Jicha | B. Singer | J. Mescua | M. Gozalvez | Cintia Marquetti | M. Etcheverría | Angel Jara | N. Iannizzotto
[1] Paul C. Painter,et al. Estructura , 2019, Fundamentos de Ciencia de Polimeros.
[2] W. K. Lieu,et al. The robustness of Sr/Y and La/Yb as proxies for crust thickness in modern arcs , 2019, Geosphere.
[3] A. Echaurren,et al. Tectonic controls on the building of the North Patagonian fold-thrust belt (~ 43°S) , 2019, Andean Tectonics.
[4] A. Folguera,et al. Cenozoic arc-related magmatism in the southern Central and North Patagonian Andes , 2019, Andean Tectonics.
[5] L. Fennell,et al. The role of the slab pull force in the late Oligocene to early Miocene extension in the Southern Central Andes (27°-46°S): Insights from numerical modeling , 2018, Journal of South American Earth Sciences.
[6] J. J. Flynn,et al. Late Cretaceous to Miocene volcanism, sedimentation, and upper-crustal faulting and folding in the Principal Cordillera, central Chile: Field and geochronological evidence for protracted arc volcanism and transpressive deformation , 2018, GSA Bulletin.
[7] M. Baker,et al. Along-strike segmentation of the Abanico Basin, central Chile: New chronological, geochemical and structural constraints , 2017 .
[8] P. DeCelles,et al. Quantifying crustal thickness over time in magmatic arcs , 2015, Scientific Reports.
[9] M. Spagnuolo,et al. Late Cenozoic calc-alkaline volcanism over the Payenia shallow subduction zone, South-Central Andean back-arc (34°30′-37°S), Argentina , 2015 .
[10] L. Giambiagi,et al. Influence of pre-Andean history over Cenozoic foreland deformation: Structural styles in the Malargüe fold-and-thrust belt at 35°S, Andes of Argentina , 2014 .
[11] M. Spagnuolo,et al. An Andean tectonic cycle: From crustal thickening to extension in a thin crust (34°–37°SL) , 2014 .
[12] R. Somoza,et al. Late Cretaceous to recent plate motions in western South America revisited , 2012 .
[13] L. Giambiagi,et al. Fault inversion vs. new thrust generation: A case study in the Malargüe fold-and-thrust belt, Andes of Argentina , 2012 .
[14] M. Spagnuolo,et al. Neogene magmatic expansion and mountain building processes in the southern Central Andes, 36–37°S, Argentina , 2012 .
[15] V. Ramos,et al. Repeated eastward shifts of arc magmatism in the Southern Andes: A revision to the long-term pattern of Andean uplift and magmatism , 2011 .
[16] M. Pimentel,et al. Early uplift and orogenic deformation in the Neuquén Basin: Constraints on the Andean uplift from U–Pb and Hf isotopic data of detrital zircons , 2010 .
[17] Investigaciones Científicas,et al. CERROS AMARILLOS: UN SISTEMA DE ALTERACIÓN DE TIPO PORFIRO DE EDAD MIOCENA SUPERIOR, CORDILLERA PRINCIPAL PROVINCIA DE MENDOZA , 2009 .
[18] Brad S. Singer,et al. ESTADÍO INICIAL DEL ARCO VOLCÁNICO NEÓGENO EN LA CORDILLERA PRINCIPAL DE MENDOZA (35° S) , 2008 .
[19] U. Schärer,et al. Lithospheric Origin of Oligocene–Miocene Magmatism in Central Chile: U–Pb Ages and Sr–Pb–Hf Isotope Composition of Minerals , 2008 .
[20] W. Collins,et al. Quantifying crustal thickness variations in evolving orogens: Correlation between arc basalt composition and Moho depth , 2008 .
[21] A. Kerr,et al. Classification of Altered Volcanic Island Arc Rocks using Immobile Trace Elements: Development of the Th–Co Discrimination Diagram , 2007 .
[22] M. Franchini,et al. Fe Skarn, Iron Oxide Cu-Au, and Manto Cu-(Ag) Deposits in the Andes Cordillera of Southwest Mendoza Province (34°–36°S), Argentina , 2007 .
[23] R. Charrier,et al. Tectonostratigraphic evolution of the Andean Orogen in Chile , 2007 .
[24] S. Kay,et al. Early to middle Miocene backarc magmas of the Neuquén Basin: Geochemical consequences of slab shallowing and the westward drift of South America , 2006 .
[25] S. Kay,et al. Upper Cretaceous to Holocene magmatism and evidence for transient Miocene shallowing of the Andean subduction zone under the northern Neuquén Basin , 2006 .
[26] P. Kraemer,et al. Evolución de las cuencas sinorogénicas de la Cordillera Principal entre 35°- 36° S, Malargüe , 2005 .
[27] P. Lonsdale. Creation of the Cocos and Nazca plates by fission of the Farallon plate , 2005 .
[28] R. Sillitoe,et al. Andean Copper Province Tectonomagmatic Settings, Deposit Types, Metallogeny, Exploration, and Discovery , 2005 .
[29] S. Kay,et al. Episodic arc migration, crustal thickening, subduction erosion, and magmatism in the south-central Andes , 2005 .
[30] D. Morata,et al. Tertiary volcanism during extension in the Andean foothills of central Chile (33°15′–33°45′S) , 2003 .
[31] G. Stephens,et al. El volcanismo del Terciario superior del sur de Mendoza , 2002 .
[32] S. Kay,et al. Evidence for Cenozoic extensional basin development and tectonic inversion south of the flat-slab segment, southern Central Andes, Chile (33°–36°S.L.) , 2002 .
[33] S. Kay,et al. Central Andean Ore Deposits Linked to Evolving Shallow Subduction Systems and Thickening Crust , 2001 .
[34] G. Yáñez,et al. Inversion of an Oligocene volcano-tectonic basin and uplifting of its superimposed Miocene magmatic arc in the Chilean Central Andes: first seismic and gravity evidences , 1999 .
[35] S. Kay,et al. Geochronology of Miocene plutons and exhumation history of the El Teniente region, Central Chile (34-35°8) , 1997 .
[36] M. Novacek,et al. New evidence for late mesozoic-early Cenozoic evolution of the Chilean Andes in the upper Tinguiririca valley (35 °S), central Chile , 1996 .
[37] D. Figueroa,et al. Inversion of the Mesozoic Neuquén Rift in the Malargüe Fold and Thrust Belt, Mendoza, Argentina , 1995 .
[38] W. McDonough,et al. Chemical and isotopic systematics of oceanic basalts: implications for mantle composition and processes , 1989, Geological Society, London, Special Publications.
[39] W. Hildreth,et al. Crustal contributions to arc magmatism in the Andes of Central Chile , 1988 .
[40] P. Molnar,et al. Relative motion of the Nazca (Farallon) and South American Plates since Late Cretaceous time , 1987 .
[41] R. Pilger,et al. Cenozoic plate kinematics, subduction and magmatism: South American Andes , 1984, Journal of the Geological Society.
[42] W. Boynton. Cosmochemistry of the rare earth elements: meteorite studies. , 1984 .