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Azores
Emplacement history of volcaniclastic turbidites around the central Azores volcanic islands: Frequencies of slope landslides and eruptions
An equation for deriving spatial variations in carbonate production rates from sediment deposition rates and dilution: Application to Santa Maria Island, Azores
Håleniusite-(Ce), CeOF, the Ce Analogue of Håleniusite-(La) from the Água de Pau Volcano, Sãn Miguel Island, Azores District, Portugal
Submarine landslides: mapping the susceptibility in European seas
Heterogeneous mantle-derived helium isotopes in the Canary Islands and other ocean islands
Innovative boat-towed transient electromagnetics — Investigation of the Furnas volcanic lake hydrothermal system, Azores
Pliocene and Late Pleistocene actinopterygian fishes from Santa Maria Island, Azores (NE Atlantic Ocean): palaeoecological and palaeobiogeographical implications
Assessment of clayey materials from Santa Maria (Azores, Portugal) for preparation of peloids
In situ granulation by thermal stress during subaqueous volcanic eruptions
FEEDING TRACES OF RECENT RAY FISH AND OCCURRENCES OF THE TRACE FOSSIL PISCICHNUS WAITEMATA FROM THE PLIOCENE OF SANTA MARIA ISLAND, AZORES (NORTHEAST ATLANTIC)
A pollen inventory of endemic species from the Azores archipelago, Portugal
Maximum Observed Intensity Map for the Azores Archipelago (Portugal) from 1522 to 2012 Seismic Catalog
Fogoite-(Y), Na 3 Ca 2 Y 2 Ti(Si 2 O 7 ) 2 OF 3 , a Group I TS-block mineral from the Lagoa do Fogo, the Fogo volcano, São Miguel Island, the Azores: Description and crystal structure
3D magnetotelluric exploration of Sete Cidades Volcano, São Miguel Island, Azores
Emergence and evolution of Santa Maria Island (Azores)—The conundrum of uplifted islands revisited
On the compositional variability of dalyite, K 2 ZrSi 6 O 15 : a new occurrence from Terceira, Azores
Coda Q in Different Tectonic Areas, Influence of Processing Parameters
We report new 40 Ar/ 39 Ar ages on submarine lavas from the Azores Plateau that yield ages of 6–4.9 Ma and 1.5 Ma to Holocene. An additional sample from the eastern plateau gives an age of 39 Ma. Thus, at least two, possibly even three eruptive phases occurred in the past 39 m.y. The lava compositions range from slightly incompatible trace element–enriched tholeiites to highly enriched alkali basalts similar to those erupted on the Azores islands. The less enriched tholeiitic lavas occur in the westernmost plateau and formed by relatively high degrees of partial melting. The highly enriched alkali basalts appear to be restricted to local volcanic structures, implying different phases of intraplate volcanism that are possibly related to the jump of the ultraslow-spreading Terceira Rift within the Azores Plateau. The abundance and widespread spatial distribution of volcanism with ages of 6–4.9 Ma in subaerial and submarine lavas implies the presence of a thermal or chemical melting anomaly and a period of enhanced volcanism that led to tholeiitic volcanism following, and being followed by, alkali-basaltic volcanism. The small-scale (Sr-)Nd-Pb isotopic heterogeneity of the Azores plume source implies limited mixing in the mantle, in contrast to observations made on other plume-related settings such as the Galapagos. We suggest that the Azores Plateau initially formed from interaction between geochemically and thermally anomalous mantle, possibly a small mantle plume, arriving underneath the lithosphere, and the local plate tectonics, i.e., the Terceira Rift axis, provided ascent paths for the generated magmas.