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NARROW
GeoRef Subject
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all geography including DSDP/ODP Sites and Legs
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Caribbean region
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West Indies
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Antilles
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Lesser Antilles
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Guadeloupe (3)
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Europe
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Alps
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Western Alps
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Maritime Alps
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Argentera Massif (1)
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Southern Europe
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Italy
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Piemonte Italy (1)
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Western Europe
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France
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Alpes-Maritimes France (1)
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Maritime Alps
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Argentera Massif (1)
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commodities
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geothermal energy (1)
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elements, isotopes
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large-ion lithophile elements (1)
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metals
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rare earths (1)
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geochronology methods
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Ar/Ar (1)
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geologic age
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Cenozoic
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Quaternary (1)
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Tertiary
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Neogene
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Pliocene (2)
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upper Cenozoic (1)
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Mesozoic
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Cretaceous (1)
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igneous rocks
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igneous rocks
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plutonic rocks
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lamprophyres (1)
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volcanic rocks
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dacites (1)
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metamorphic rocks
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metamorphic rocks
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gneisses
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paragneiss (1)
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metaigneous rocks
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metadacite (1)
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metasedimentary rocks
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paragneiss (1)
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metavolcanic rocks (1)
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migmatites (1)
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minerals
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silicates
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framework silicates
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feldspar group
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alkali feldspar
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adularia (1)
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K-feldspar (1)
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plagioclase (1)
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silica minerals
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quartz (1)
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sheet silicates
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clay minerals (1)
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sulfates
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jarosite (1)
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Primary terms
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absolute age (1)
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Caribbean region
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West Indies
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Antilles
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Lesser Antilles
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Guadeloupe (3)
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Cenozoic
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Quaternary (1)
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Tertiary
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Neogene
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Pliocene (2)
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upper Cenozoic (1)
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deformation (3)
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Europe
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Alps
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Western Alps
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Maritime Alps
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Argentera Massif (1)
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Southern Europe
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Italy
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Piemonte Italy (1)
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-
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Western Europe
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France
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Alpes-Maritimes France (1)
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Maritime Alps
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Argentera Massif (1)
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faults (2)
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foliation (1)
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fractures (1)
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geothermal energy (1)
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igneous rocks
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plutonic rocks
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lamprophyres (1)
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volcanic rocks
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dacites (1)
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Mesozoic
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Cretaceous (1)
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metals
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rare earths (1)
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metamorphic rocks
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gneisses
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paragneiss (1)
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metaigneous rocks
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metadacite (1)
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metasedimentary rocks
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paragneiss (1)
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metavolcanic rocks (1)
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migmatites (1)
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metamorphism (1)
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orogeny (1)
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plate tectonics (1)
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sedimentary rocks (1)
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structural analysis (2)
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tectonics
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neotectonics (1)
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sedimentary rocks
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sedimentary rocks (1)
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Structure of lamprophyres: a discriminant marker for Variscan and Alpine tectonics in the Argentera-Mercantour Massif, Maritime Alps
Tectono-metamorphic evolution of shallow crustal levels within active volcanic arcs. Insights from the exhumed Basal Complex of Basse-Terre (Guadeloupe, French West Indies)
Abstract The 40 Ar/ 39 Ar technique is the most commonly used technique to date basaltic rocks. For basaltic rocks older than about 30 Ma, the dating of plagioclase separates is preferred over groundmass as the latter is susceptible to containing cryptic alteration due to fluid circulations, difficult if not impossible to remove during sample preparation. Alteration under such metamorphic conditions progressively forms K-rich sericite after plagioclase. Owing to its transparency, plagioclase allows a distinction to be made optically between partially–completely altered grains and fresh grains. However, practice shows that grains that contain less than about 1% of sericite are hard to identify under the stereomicroscope. Owing to the high K 2 O content ( c. 10 wt%) of sericite, such compromised grains can have dramatic effects on the age determination of plagioclase. Here, we investigate and quantify the effect of sericite on the 40 Ar/ 39 Ar age determination of plagioclase using a numerical model with multiple variable parameters. We show that the most influential parameter is the time difference between the crystallization of plagioclase and the sericitization event. We also show that for some continental flood basalts, even 0.1 wt% of sericite can bias the apparent age of a plagioclase separate by several hundred thousand years. The presence of sericite can be identified using a combination of Ca/K ratios, age spectra, and 39 Ar and 37 Ar degassing curves obtained during a conventional 40 Ar/ 39 Ar step-heating procedure. When the age of the fresh plagioclase and its Ca/K ratio are known, the percentage of sericitization and the age of the alteration event can be estimated. Ultimately, above approximately 65% of sericitization, the apparent age measured on the altered plagioclase is within ±1% of the age of the alteration event, with implications for accurately dating low-temperature metamorphism and mineral deposit formations. Supplementary material: Further details of calculation are available at http://www.geolsoc.org.uk/SUP18609 .