Volcano-stratigraphic and structural evolution of Brava Island (Cape Verde) based on 40Ar/39Ar, U-Th and field constraints
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[1] José María Semedo. A Ilha de Santiago (Cabo Verde) , 2012 .
[2] R. Ramalho. Vertical Movements of Ocean Island Volcanoes: Insights from a Stationary Plate , 2011 .
[3] George Helffrich,et al. Episodic swell growth inferred from variable uplift of the Cape Verde hotspot islands , 2010 .
[4] C. Maerschalk,et al. Chemical and mineralogical evidence of the occurrence of mantle metasomatism by carbonate-rich melts in an oceanic environment (Santiago Island, Cape Verde) , 2010 .
[5] D. Schmidt,et al. Tracers of uplift and subsidence in the Cape Verde archipelago , 2010, Journal of the Geological Society.
[6] M. Moreira,et al. Noble gas and carbon isotopic signatures of Cape Verde oceanic carbonatites: Implications for carbon provenance , 2010 .
[7] M. Moreira,et al. Quaternary extrusive calciocarbonatite volcanism on Brava Island (Cape Verde): A nephelinite-carbonatite immiscibility product , 2010 .
[8] M. Schnabel,et al. Seismic activity at Cadamosto seamount near Fogo Island, Cape Verdes—formation of a new ocean island? , 2010 .
[9] M. Norman,et al. Imbrium provenance for the Apollo 16 Descartes terrain: Argon ages and geochemistry of lunar breccias 67016 and 67455 , 2010 .
[10] J. Fonseca,et al. Transition zone structure under a stationary hot spot: Cape Verde , 2010 .
[11] P. Holm,et al. A volcanological and geochemical investigation of Boa Vista, Cape Verde Islands; 40Ar/39Ar geochronology and field constraints , 2010 .
[12] Yasuhiro Yamada,et al. Submarine Mass Movements and Their Consequences , 2010 .
[13] J. Ray. Radiogenic Isotopic Ratio Variations in Carbonatites and Associated Alkaline Silicate Rocks: Role of Crustal Assimilation , 2009 .
[14] A. Ivanov,et al. 40Ar/39Ar dating of intrusive magmatism in the Angara-Taseevskaya syncline and its implication for duration of magmatism of the Siberian traps , 2009 .
[15] D. Hoffmann,et al. Micromill and in situ laser ablation sampling techniques for high spatial resolution MC-ICPMS U-Th dating of carbonates , 2009 .
[16] F. Stuart,et al. Cosmogenic 3He exposure dating of the Quaternary basalts from Fogo, Cape Verdes: Implications for rift zone and magmatic reorganisation , 2009 .
[17] K. David,et al. Mantle plume heterogeneity versus shallow-level interactions: A case study, the São Nicolau Island, Cape Verde archipelago , 2008 .
[18] A. Barker,et al. An 40Ar-39Ar study of the Cape Verde hot spot: Temporal evolution in a semistationary plate environment , 2008 .
[19] A. Krabbenhoeft,et al. Crustal structure and origin of the Cape Verde Rise , 2008 .
[20] T. L. Bas,et al. Flank collapse and large‐scale landsliding in the Cape Verde Islands, off West Africa , 2008 .
[21] Walter R. Roest,et al. Age, spreading rates, and spreading asymmetry of the world's ocean crust , 2008 .
[22] D. Zhao. Seismic images under 60 hotspots: Search for mantle plumes , 2007 .
[23] P. Holm,et al. The volcanic and geochemical development of São Nicolau, Cape Verde Islands: Constraints from field and 40Ar/39Ar evidence , 2007 .
[24] G. Schaumann,et al. Influence of the sample history and the moisture status on the thermal behavior of soil organic matter , 2007 .
[25] V. Bosse,et al. Temporal evolution of the Cabo Verde archipelago: New constraints from Ar-40-Ar-39 data , 2007 .
[26] T. L. Bas,et al. Slope Failures Of The Flanks Of The Southern Cape Verde Islands , 2007 .
[27] D. Sakellariou,et al. Submarine mass movements and their consequences : 3rd international symposium , 2007 .
[28] S. Heleno,et al. Observations of high-frequency harmonic tremor in Fogo, Cape Verde Islands , 2006 .
[29] Guust Nolet,et al. A catalogue of deep mantle plumes: New results from finite‐frequency tomography , 2006 .
[30] C. D. Ignacio,et al. Isotope geochemistry and FOZO mantle component of the alkaline-carbonatitic association of Fuerteventura, Canary Islands, Spain , 2006 .
[31] G. Helffrich,et al. Depleted swell root beneath the Cape Verde Islands , 2006 .
[32] K. Miller,et al. The Phanerozoic Record of Global Sea-Level Change , 2005, Science.
[33] T. Jeffries,et al. New data (U Pb, K Ar) on the geochronology of the alkaline-carbonatitic association of Fuerteventura, Canary Islands, Spain , 2005 .
[34] T. Hansteen,et al. Magma storage and underplating beneath cumbre vieja volcano, la palma (canary islands) , 2005 .
[35] R. Duncan,et al. Radiometric ages for basement rocks from the Emperor Seamounts, ODP Leg 197 , 2004 .
[36] M. Moreira,et al. Pb-Sr-He isotope and trace element geochemistry of the Cape Verde Archipelago , 2003 .
[37] I. Hill,et al. A seismic reflection profile study of lithospheric flexure in the vicinity of the Cape Verde Islands , 2003 .
[38] J. Wilson,et al. 40Ar-39Ar geochronology of Santo Antão, Cape Verde Islands , 2003 .
[39] R. Edwards,et al. Uranium-series Dating of Marine and Lacustrine Carbonates , 2003 .
[40] Simon Turner,et al. Uranium-series geochemistry , 2003 .
[41] P. Holm,et al. Temporal variation and carbonatite contamination in primitive ocean island volcanics from São Vicente, Cape Verde Islands , 2002 .
[42] Anthony A. P. Koppers,et al. ArArCALC-software for 40 Ar/ 39 Ar age calculations , 2002 .
[43] D. Garbe‐Schönberg,et al. Geochemistry of oceanic carbonatites compared with continental carbonatites: mantle recycling of oceanic crustal carbonate , 2002 .
[44] R. W. Le Maitre,et al. Igneous Rocks: A Classification and Glossary of Terms , 2002 .
[45] A. Jambon,et al. Helium, argon and lead isotopic composition of volcanics from Santo Antão and Fogo, Cape Verde Islands , 2001 .
[46] P. Renne,et al. A test for systematic errors in 40Ar/39Ar geochronology through comparison with U/Pb analysis of a 1.1-Ga rhyolite , 2000 .
[47] Simon Day,et al. A past giant lateral collapse and present-day flank instability of Fogo, Cape Verde Islands , 1999 .
[48] L. Kogarko. Geochemical characteristics of oceanic carbonatites from the Cape Verde Islands , 1993 .
[49] F. Pollitz. Two-stage model of African absolute motion during the last 30 million years , 1991 .
[50] C. Williams,et al. Fracture zones across the Cape Verde Rise, NE Atlantic , 1990, Journal of the Geological Society.
[51] Norman H. Sleep,et al. Hotspots and Mantle Plumes' Some Phenomenology , 1990 .
[52] J. Azéma,et al. Découverte de valanginien inférieur à Calpionelles à Maio (République du Cap Vert): discussion de l'âge des sédiments associés aux laves de type MORB de ce secteur de l'Atlantique Central , 1990 .
[53] M. J. Bas. Nephelinitic and Basanitic Rocks , 1989 .
[54] A. Woolley,et al. Carbonatites: nomenclature, average chemical compositions, and element distribution , 1989 .
[55] R. W. Le Maitre,et al. A Classification of igneous rocks and glossary of terms : recommendations of the International Union of Geological Sciences Subcommission on the Systematics of Igneous Rocks , 1989 .
[56] K. Bell. Carbonatites : genesis and evolution , 1989 .
[57] N. Hodgson,et al. Magma sources of the Cape Verdes archipelago: Isotopic and trace element constraints , 1988 .
[58] A. Cazenave,et al. Geoid and depth anomalies over ocean swells and troughs: Evidence of an increasing trend of the geoid to depth ratio with age of plate , 1988 .
[59] Robert S. White,et al. Anomalous heat flow and geoid across the Cape Verde Rise: evidence for dynamic support from a thermal plume in the mantle , 1986 .
[60] H. Staudigel,et al. The history of intrusive activity on the island of La Palma (Canary Islands) , 1986 .
[61] H. Furnes,et al. On dating the magmatism of Maio, Cape Verde Islands , 1983 .
[62] A. Robertson,et al. An oceanic carbonatite volcano on Santiago, Cape Verde Islands , 1981, Nature.
[63] R. Pankhurst,et al. The interpretation of igneous rocks , 1979 .
[64] S. T. Crough. Thermal origin of mid‐plate hot‐spot swells , 1978 .
[65] J. Minster,et al. Systematic use of trace elements in igneous processes , 1978 .
[66] R. Steiger,et al. Subcommission on geochronology: Convention on the use of decay constants in geo- and cosmochronology , 1977 .
[67] K. D. Jong. Progress in Geodynamics: (Proceedings of the national symposium on Geodynamics held in Amsterdam, April 3–4, 1975). G.J. Borradaile, A.R. Ritsema, H.E. Rondeel and O.J. Simon (editors). North-Holland, Amsterdam, 1975, 245 pp., US$ 24.95 , 1977 .
[68] F. Albarède,et al. Systematic use of trace element in igneous process , 1977 .
[69] J. Sutter,et al. Interpretation of discordant 40Ar/39Ar age-spectra of mesozoic tholeiites from antarctica , 1977 .
[70] M. John,et al. Carbonatite-nephelinite volcanism: An African case history , 1977 .
[71] P. Rona,et al. Geophysical investigation of the Cape Verde Archipelago , 1976 .
[72] P. Lehner,et al. New radiometric ages and seismic data from Fuerteventura (Canary Islands), Maio (Cape Verde Islands), and Sao Tome (Gulf of Guinea) , 1975 .
[73] J. Hertogen,et al. Oceanic tholeiites on the Cape Verde Islands: petrochemical and geochemical evidence , 1974 .
[74] J. Lancelot,et al. Origin of carbonatitic magma in the light of the Pb-U-Th isotope system , 1974 .
[75] M. Bernat,et al. Evidence for the Occurrence of Carbonatites on the Cape Verde and Canary Islands , 1971 .
[76] G. A. Macdonald. Composition and Origin of Hawaiian Lavas , 1968 .
[77] J. Ambrus,et al. Critical evaluation. , 1965, The Wistar Institute symposium monograph.
[78] J. B. Bebiano. A geologia do Arquipélago de Cabo Verde , 1932 .